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Category Archives: Nanotech

You Need to Know About the Top 5 Trends in Pharmaceutical Analysis – EuroScientist

Posted: May 14, 2021 at 6:15 am

Pharmaceutical analysis is always advancing to improve drug discovery and safety. Its a branch of chemistry that deals with studying compounds to find, create, or test drugs. These scientists help keep people safe from dangerous chemicals while improving public health. As you might expect, this process can be challenging, so the industry is always looking for new technologies and techniques to improve itself. Here are five of the top pharmaceutical trends driving the sector today.

Discovering new drugs or ensuring current ones are safe can be a long, complicated process. At the same time, chemists want to move through the steps quickly to help people sooner. Automation can help speed up the process without compromising safety or quality.

Automatic data recording is one of the most helpful developments in lab automation. Chemists record everything to ensure experiments are accurate and repeatable, but doing so manually is slow and inconvenient. With new technologies, the tools they use can automatically record and organise this data, saving a lot of time.

Another advantage of automation is that robots and computers tend to be more precise than people. As a result, automation has led to more accurate results in drug research. People make mistakes, so using machines to run tests can prevent errors.

The Internet of Things (IoT) is a growing trend across nearly every industry. You probably have an IoT device or two in your own home. In pharmaceutical analysis, these gadgets can help keep labs productive and safe.

One of the most significant use cases of the IoT in pharmaceuticals is smart personal protective equipment (PPE). There can be roughly 400 hazardous chemicals in a laboratory, but many workers forgo proper PPE. The IoT can monitor whether employees are actually using them, helping enforce safety regulations.

IoT connectivity in the lab also lets researchers control or monitor machinery remotely. Connected sensors can also alert lab workers if theres a mechanical error they should address. This kind of transparency and accessibility helps employees stay as productive as possible, leading to faster, more accurate results.

Its hard to think of an industry that artificial intelligence (AI) hasnt affected. Unsurprisingly, AI is one of the fastest-growing and exciting pharmaceutical trends today. Machine learning models can revolutionise drug discovery, helping chemists find potential new treatments faster than ever.

AI can simulate how different drugs would interact with a virus or other pathogen, finding potential treatments. Similarly, it can predict possible side effects in patients. AI-based decision-making like this helped Moderna develop their COVID-19 vaccine in record time.

Since AI automates and speeds up so much of the drug discovery process, it can also lower costs. Some reports estimate that AI could curb expenses by 70%, making vital medications far more affordable. While using this technology in pharmaceuticals is still a new trend, these benefits are helping it skyrocket.

Tech everywhere is getting smaller, and in pharmaceutical analysis, its getting microscopic. Nanotechnology, which is tech smaller than 1,000 nanometers, is a relatively new field for chemists but a growing one. Tools this small can detect changes in individual molecules, making research far more precise.

When scientists can manipulate chemicals on a molecular level, it opens a whole new world of possibilities. With less precise systems, researchers may not be able to change one part of a solution without affecting the rest. Nanotechnology also helps lab workers separate solutions into smaller parts to analyse the components individually.

Some researchers are looking into using nanotech for drug delivery, too. If technology could deliver medication through microscopic tools, it could remove the need for shots.

One of the less obvious recent pharmaceutical trends is a greater emphasis on cybersecurity. These companies and laboratories are valuable targets for cybercriminals, and they know it. In a recent survey, 70% of pharma companies said that cyber-threats are one of their top concerns.

Labs rely on technology, so a cyberattack could cause a lot of damage. As the threat of state-sponsored cyberattacks rises, this is a growing concern. Since the pharmaceutical industry is so massive, a successful attack could be profitable for the hackers.

Given these threats, pharmaceutical analysis companies across the globe have ramped up their cybersecurity. With more advanced security tools, these organisations can stay safe, keeping clients safe, too.

In an industry like pharmaceutical analysis, new technologies and practices can save lives. As such, change and advancement is standard in the sector. These five trends are just a small example of how medicine is moving forward for everyones benefit.

Written by Emily Newton, science and technology journalist, Editor-in-Chief of Revolutionized Magazin.

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IBM makes another major chip breakthrough in Albany – Times Union

Posted: May 11, 2021 at 11:52 pm

ALBANY Four years ago, IBM surprised the semiconductor industry by unveiling the world's first 5 nanometer computer chip developed at its clean room lab at Albany Nanotech on Fuller Road, the most advanced chip technology ever developed at the time.

On Thursday, IBM is making public yet another major breakthrough that demonstrates it remains at the vanguard of computer chip invention the creation of the first working 2nm chip with 50 billion transistors crammed onto a silicon chip the size of a fingernail.

And this cutting-edge device was made right here in our backyard.

It's another celebrated milestone not only for New York-based IBM but also for the Capital Region and its reputation as a premier hub for computer chip research and manufacturing.

"This is the world's first test chip with 2 nanometer technology," Mukesh Khare, vice president of Hybrid Cloud Research at IBM told journalists Wednesday from his office at Albany Nanotech. "It's very exciting. And it was made right here in Albany where the breakthrough took place."

The timing couldn't be more promising for New York state, which is currently in the running to attract not only a second computer chip factory at GlobalFoundries' Fab 8 campus in Saratoga County but potentially two more factories, or fabs, being planned by Intel and Samsung, both of which partner with IBM on chip research in Albany.

IBM, with its headquarters in Westchester County, has been the cornerstone of Albany Nanotech, which is home to SUNY Polytechnic Institute, for two decades.

And New York state has made sure that IBM has felt at home to do its most important semiconductor work here, providing the company with hundreds of millions of dollars in financial support over that period to provide IBM and its research partners with the most advanced chip manufacturing equipment and clean room facilities available anywhere in the world.

The IBM innovation reflected in this new 2nm chip is essential to the entire semiconductor and IT industry, said Daro Gil, director of IBM Research. It is the product of IBMs approach of taking on hard tech challenges and a demonstration of how breakthroughs can result from sustained investments and a collaborative research and development ecosystem approach.

So what exactly is so special about a 2nm chip? First, the chip itself is not 2 nanometers wide, which would make it invisible to the naked eye and smaller than a single strand of DNA.

Instead, the 2 nanometers refers to an industry milestone, or node, for shrinking certain features that has historically correlated to the size of the gate of the transistors on chips that control the flow of electrons and the movement of instructions around the device.

Years ago, the nodes no longer reflected the true gate size and became more of a marketing description. For instance, this new 2nm chip has a gate size of 12nm, although IBM says some of the other features are as small as 2nm.

Either way, as the chip nodes continue to get smaller, the chip architecture also gets smaller, allowing IBM and others to cram more and more transistors on the chips, driving down the cost to make them more powerful and more energy efficient.

For instance, IBM's 2nm chip has 20 million more transistors than the 5nm chip it made in 2017, leading to a nearly 50 percent increase in performance over chips used in most of the latest mobile phones and computers in use today which use 7nm chips. (Apple's latest iPhone uses 5nm chips made by Taiwan Semiconductor Manufacturing Co., which is also close to unveiling its own 2nm chips.)

IBM doesn't make its own chips anymore after selling off its two chip fabs located in Dutchess County and Vermont to GlobalFoundries, which announced last week it has moved its corporate headquarters from Silicon Valley to its Fab 8 campus in the town of Malta where it employs 3,000 people.

But GlobalFoundries only makes chips down to the 14nm node, which represents the lion's share of chips made today for all but the most high-end electronic devices like the iPhone.

Instead, IBM contracts out the manufacturing of its chips for IBM servers to Samsung, which partners with IBM at Albany Nanotech. Intel recently announced it would join IBM in Albany as well.

The hope is that either Intel or Samsung or perhaps both might potentially locate chip manufacturing facilities in the Capital Region or somewhere else in upstate New York to be close to IBM's research operations, just as GlobalFoundries did a decade ago when it was doing all of its research with IBM. GlobalFoundries has since cut back drastically on research spending after deciding it could make 14nm chips in Malta for its customers for the foreseeable future.

GlobalFoundries as well as Samsung and Intel are all looking at possibly building fabs in New York after the Biden administration, urged on by U.S. Senate Majority Leader Chuck Schumer of New York, has proposed spending $50 billion to provide incentives to chip makers to expand their domestic manufacturing and chip research operations to ensure that the U.S. keeps pace with China in chip making.

IBM and Albany Nanotech, which is operated by a quasi-state entity called NY-CREATES, are planning on trying to land some of that $50 billion in funding to establish a new national chip research lab in Albany that would only further bolster the Capital Region's reputation in the industry as the best place in the country to develop and make chips.

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Nanotechnology Market scrutinized in the new analysis – WhaTech

Posted: at 11:52 pm

The global nanotechnology market size is expected to reach USD 290.93 Billion in 2028 and register a CAGR of 18.3% during the forecast period.

The Global Nanotechnology Market research report, released by Emergen Research, gives an extensive study of the industry with the essential data and information relating to the global market. The market evaluations over the forecast years on the basis of an in-depth study of the leading market segments, product type outlook, application continuum, regional overview, and the highly competitive scenario of the market.

Nanotechnology has scope to improve drug-delivery systems and lead to cheaper and more reliable systems. Materials built on nanoscale can enable advancements in encapsulation systems that protect and secrete enclosed drugs in slow and controlled manner. It can prove to be a valuable solution in countries that do not have adequate storage facilities and distribution networks. Nanotechnology raises the possibility of microscopic recording devices which can be virtually undetectable, and the technology can also be weaponized.

http://www.emergenresearch.com/request-sample/587

Some Key Highlights in the Report

Nanotechnology Market Segmentation:

Emergen Research has segmented the global nanotechnology market on the basis of type, industry, and region:

Additionally, the report offers market share data for the global spread of the Nanotechnology industry. Key geographical regions such as North America, Europe, Asia Pacific, Latin America, and Middle East & Africa are studied to assess the market size, market share, production and consumption patterns, import/export, supply and demand ratio, and revenue contributions.

Furthermore, the regions are also studied to understand the operations of the key players located in the region.

Report: http://www.emergenresearch.com/requestzation/587

Key Benefits of the Global Nanotechnology Market Report:

Table of Content

Chapter 1. Methodology & Sources 1.1. Market Definition 1.2. Research Scope 1.3. Methodology 1.4. Research Sources 1.4.1. Primary 1.4.2. Secondary 1.4.3. Paid Sources 1.5. Market Estimation TechniqueChapter 2. Executive Summary 2.1. Summary Snapshot, 2020-2028Chapter 3. Key InsightsChapter 4. Nanotechnology Market Segmentation & Impact Analysis 4.1. Nanotechnology Market Material Segmentation Analysis 4.2. Industrial Outlook 4.2.1. Market indicators analysis 4.2.2. Market drivers analysis 4.2.2.1. Increasing penetration of nanotechnology in various applications 4.2.2.2. Rapid technological advancements in medical industry 4.2.3. Market restraints analysis 4.2.3.1. Problems regarding the deployment of nanotech devices in extreme weather conditions. 4.3. Technological Insights 4.4. Regulatory Framework 4.5. Porters Five Forces Analysis 4.6. Competitive Metric Space Analysis 4.7. Price trend Analysis 4.8. Covid-19 Impact Analysis

Chapter 5. Nanotechnology Market By Type Insights & Trends, Revenue (USD Billion) 5.1. Type Dynamics & Market Share, 2021 & 2028 5.1.1. Nanomaterials 5.1.2. Nanocomposites 5.1.3. Nano devices 5.1.4. Nano tools 5.1.5. Others

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Stretchable Conductive Material Market to Eyewitness Massive Growth by 2026 | Dupont & Co., 3M Company, Toyobo Co., Ltd., Advanced Nano Products…

Posted: April 13, 2021 at 6:40 am

New York, NY, APRIL. 7, 2021 :Advanced Research Reports published By Index Markets Research on GlobalStretchable Conductive MaterialMarket are spread out over numerous pages and provide the latest industry data, market future trends, enabling products and end users to drive revenue growth and profitability. Stretchable Conductive Material Market reports list the study key competitors and provide strategic industry analysis of key factors affecting market dynamics. This report begins with an overview of the Stretchable Conductive Material market and is available throughout development. It provides a complete analysis of all regional and major player segments that provide insight into current market conditions and future market opportunities along with drivers, trend segments, consumer behavior, price factors and market performance and estimates over the forecast period. The report will be offering a significant insight while shedding light on the key players[Dupont & Co., 3M Company, Toyobo Co., Ltd., Advanced Nano Products Co., Ltd., Applied Nanotech, Inc., Indium Corporation, Vorbeck Materials Corp., National Institute of Advanced Industrial Science and Technology, Textronics, Inc., Lotte Advanced Materials]actively participating and contributing to the growth of the global Stretchable Conductive Material market. Further, it includes insights provided by the analysts and experts about the financial statements along with the company profiles, products, and services of all the key market players.

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The Stretchable Conductive Material market studies feature a study combining primary and secondary research. The report provides a snapshot of the key factors influencing the generation and growth limitation of Stretchable Conductive Material markets. Moreover, the report also looks at competitive developments, such as mergers and acquisitions, new partnerships, new contracts, and new products in the global marketplace. The past trends and future perspectives included in this report make it very comprehensible for market analysis. As well, the latest trends, product portfolio, demographics, geographic segmentation, and market regulatory framework Stretchable Conductive Material were also included in the study.

Besides, the report examines and provides a detailed delineation of industry environment which explores influential factors such as social, political, economic, and atmospheric conditions as well as provincial trade frameworks, market entry barriers, and other hindering factors that may impact the global Stretchable Conductive Material growth and causes profit declines. Eventually, the report offers valuable research conclusions that help players make informed business decisions and stay ahead of the curve.

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Research Coverage:The market study covers the Stretchable Conductive Material market size across segments. It aims at estimating the market size and the growth potential of the market across segments by type, application, and region.

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Key Objectives of Stretchable Conductive Material Market Report: Study of the annual revenues and market developments of the major players that supply Stretchable Conductive Material Analysis of the demand for Stretchable Conductive Material by component Assessment of future trends and growth of architecture in the Stretchable Conductive Material market Assessment of the Stretchable Conductive Material market with respect to the type of application Study of the market trends in various regions and countries, by component, of the Stretchable Conductive Material market Study of contracts and developments related to the Stretchable Conductive Material market by key players across different regions Finalization of overall market sizes by triangulating the supply-side data, which includes product developments, supply chain, and annual revenues of companies supplying Stretchable Conductive Material across the globe.

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Reasons to buy this Report: We share detailed and exact information about the market forecast. Our reports have been examined by professional experts of the industry, which makes them beneficial for the company to maximize their Return Over Investment(ROI). The analysis acknowledges that the sector players key drivers of both conflicts and Stretchable Conductive Material growth assess the impact of limitations as well as the opportunities on the sector. Data regarding Stretchable Conductive Material industry share by every item fragment, alongside their reasonable worth, have been served in the report. We provide statistic information, strategic and analysis tool results to provide a sophisticated landscape and target key market players. This will help the company to increase its efficiency. Our report helps readers decipher the current and future constraints of the Stretchable Conductive Material market and optimal business strategies to enhance market development.

In the end, the Stretchable Conductive Material Market Report delivers a conclusion which includes Breakdown and Data Triangulation, Consumer Needs/Customer Preference Change, Research Findings, Market Size Estimation, Data Source. These factors are expected to augment the overall business growth.

Customization of the Report:1)All segmentation provided above in this report is represented at country level.2)All products covered in the market, product volume and average selling prices will be included as customizable options which may acquire no or minimal additional cost (depends on customization).

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Stretchable Conductive Material Market to Eyewitness Massive Growth by 2026 | Dupont & Co., 3M Company, Toyobo Co., Ltd., Advanced Nano Products...

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Taiwan Advanced Nanotech’s (GTSM:6797) Solid Profits Have Weak Fundamentals – Simply Wall St

Posted: April 11, 2021 at 5:59 am

Unsurprisingly, Taiwan Advanced Nanotech Inc.'s (GTSM:6797) stock price was strong on the back of its healthy earnings report. However, we think that shareholders may be missing some concerning details in the numbers.

Check out our latest analysis for Taiwan Advanced Nanotech

One key financial ratio used to measure how well a company converts its profit to free cash flow (FCF) is the accrual ratio. In plain english, this ratio subtracts FCF from net profit, and divides that number by the company's average operating assets over that period. The ratio shows us how much a company's profit exceeds its FCF.

As a result, a negative accrual ratio is a positive for the company, and a positive accrual ratio is a negative. While having an accrual ratio above zero is of little concern, we do think it's worth noting when a company has a relatively high accrual ratio. Notably, there is some academic evidence that suggests that a high accrual ratio is a bad sign for near-term profits, generally speaking.

Taiwan Advanced Nanotech has an accrual ratio of 0.30 for the year to December 2020. Unfortunately, that means its free cash flow was a lot less than its statutory profit, which makes us doubt the utility of profit as a guide. Indeed, in the last twelve months it reported free cash flow of NT$576m, which is significantly less than its profit of NT$618.2m. Given that Taiwan Advanced Nanotech had negative free cash flow in the prior corresponding period, the trailing twelve month resul of NT$576m would seem to be a step in the right direction.

Note: we always recommend investors check balance sheet strength. Click here to be taken to our balance sheet analysis of Taiwan Advanced Nanotech.

Taiwan Advanced Nanotech's accrual ratio for the last twelve months signifies cash conversion is less than ideal, which is a negative when it comes to our view of its earnings. Therefore, it seems possible to us that Taiwan Advanced Nanotech's true underlying earnings power is actually less than its statutory profit. The good news is that it earned a profit in the last twelve months, despite its previous loss. Of course, we've only just scratched the surface when it comes to analysing its earnings; one could also consider margins, forecast growth, and return on investment, among other factors. In light of this, if you'd like to do more analysis on the company, it's vital to be informed of the risks involved. Our analysis shows 2 warning signs for Taiwan Advanced Nanotech (1 shouldn't be ignored!) and we strongly recommend you look at these before investing.

Today we've zoomed in on a single data point to better understand the nature of Taiwan Advanced Nanotech's profit. But there is always more to discover if you are capable of focussing your mind on minutiae. Some people consider a high return on equity to be a good sign of a quality business. So you may wish to see this free collection of companies boasting high return on equity, or this list of stocks that insiders are buying.

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This article by Simply Wall St is general in nature. It does not constitute a recommendation to buy or sell any stock, and does not take account of your objectives, or your financial situation. We aim to bring you long-term focused analysis driven by fundamental data. Note that our analysis may not factor in the latest price-sensitive company announcements or qualitative material. Simply Wall St has no position in any stocks mentioned. *Interactive Brokers Rated Lowest Cost Broker by StockBrokers.com Annual Online Review 2020

Have feedback on this article? Concerned about the content? Get in touch with us directly. Alternatively, email editorial-team (at) simplywallst.com.

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Nanotech increasing pace of development in Iran – Tehran Times

Posted: April 4, 2021 at 5:21 pm

TEHRAN Nanotechnologys trend of development is growing in Iran, as the number of nanoproducts and equipment developed in the previous [Iranian calendar] year (March 20) increased to 750, compared with 647 a year before.

Some 223 product manufacturing companies and 59 equipment manufacturing companies are active in the field of nanotechnology and by the end of last year, which developed a total of 750 products and equipment.

Of the 750 products and equipment registered in the nanotechnology product database, 535 were related to nano-products and 215 were related to nano-equipment, both of which have experienced a growing trend over the past few years, although nano-products have grown more significantly.

The field of civil engineering and construction with 20 percent had the largest share among nano products and equipment, followed by medicine, health and industrial services and supplies each with 13 percent.

Iran among five pioneers of nanotechnology

Iran has been introduced as the 4th leading country in the world in the field of nanotechnology, publishing 11,546 scientific articles in 2020.

The country held a 6 percent share of the worlds total nanotechnology articles, according to StatNano's monthly evaluation accomplished in WoS databases.

Iran ranked 43rd among the 100 most vibrant clusters of science and technology (S&T) worldwide for the third consecutive year, according to the Global Innovation Index (GII) 2020 report.

The country experienced a three-level improvement compared to 2019.

Sourena Sattari, vice president for science and technology, has said that Iran is playing the leading role in the region in the fields of fintech, ICT, stem cell, aerospace, and is unrivaled in artificial intelligence.

Iranian nanotechnology companies have increased sales by 100 percent over the Iranian calendar year 1398 (March 2019-March 2020), and it is predicted that their revenue will reach up to 80 trillion rials (nearly $1.9 billion at the official rate of 42,000 rials), Sattari announced.

Knowledge-based companies

Currently, over 5,700 knowledge-based companies are active in the country, manufacturing diverse products to meet the needs of the domestic market while saving large amounts of foreign currency.

The fields of aircraft maintenance, steel, pharmaceuticals, and medical equipment, oil, and gas are among the sectors that researchers in technology companies have engaged in, leading to import reduction.

Sattari told the Tehran Times in October 2020 that U.S. sanctions caused exports of knowledge-based companies to decline three years ago, however, it has returned to growth and is projected to reach the pre-sanctions level of more than $1 billion by the end of the current [Iranian calendar] year (March 20, 2021).

Fortunately, last year, companies achieved a record sale of 1.2 quadrillion rials (nearly $28.5 billion), which is expected to increase by 40 percent this year.

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Aerospace Nanotechnology Market 2021-2027 Analysis by Industry Size, Share, Potential Growth, Demand and Forecast The Bisouv Network – The Bisouv…

Posted: at 5:21 pm

Structures that are shorter than 100 nanometers are referred to by nanotechnology. This technology is exceptional as it is capable of altering the manner in which products are processed and may be enhanced or maintained by the functionalities concerned. Three kinds of nanomaterial are composed of aerospace nanotechnology, including polymer Nano composites, anti-corrosion coatings, and Nano structured metals. By improving the defense industry, aerospace nanotechnology is likely to boost the competence of maritime and submerged battle platforms, allowing the production of Nano sensors that will help track enemy submarines. Aerospace nanotechnology is an evolving development that helps to generate energetic materials that affect the aerospace industrys production processes. The aerospace nanotechnology market is has been consistently growing since the past years and is expected to boost in coming years.

MARKET DYNAMICS

Production of carbon nanotube composites in airframe manufacturing is driving the growth of the aerospace nanotechnology market. However, constraints in manufacturing and other process may restrain the growth of the aerospace nanotechnology market. Furthermore, stealth technology advances used in airborne systems is further anticipated to create market opportunities for the aerospace nanotechnology market during the forecast period.

Aerospace Nanotechnology Market 2021-2027 Global Industry research report explores analysis of historical data along with size, share, growth, demand and revenue of the global Aerospace Nanotechnology and estimates the future trend of market on the basis of this detailed study. The study shares market performance both in terms of volume and revenue and this factor which is useful & helpful to the business.

Global Aerospace Nanotechnology Market Study

The research report provides deep insights into the global market revenue, parent market trends, macro-economic indicators, and governing factors, along with market attractiveness per market segment. The report provides an overview of the growth rate of the Aerospace Nanotechnology market during the forecast period, i.e., 20212027. Most importantly, the report further identifies the qualitative impact of various market factors on market segments and geographies. The research segments the market on the basis of product type, application, technology, and region. To offer more clarity regarding the industry, the report takes a closer look at the current status of various factors including but not limited to supply chain management, niche markets, distribution channel, trade, supply, and demand and production capability across different countries.

Major vendors covered in this report:Boeing, CHOOSE NanoTech Corp., Flight Shield Inc, Glonatech, Lockheed Martin Corporation, Metamaterial Inc., ToughGuard, LLC, tripleO Performance Solution,Veelo Technologies, LLC, ZYVEX TECHNOLOGIES

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Aerospace Nanotechnology Market Segmented by Region/Country: North America, Europe, Asia Pacific, Middle East & Africa, and Central & South America

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Aerospace Nanotechnology Market 2021-2027 Analysis by Industry Size, Share, Potential Growth, Demand and Forecast The Bisouv Network - The Bisouv...

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University of Houston to install nanotech-coated air filters on campus to prevent COVID-19 spread – InnovationMap

Posted: March 31, 2021 at 4:39 am

It's been a crazy start to 2021 with the innovation ecosystem being especially busy. For this reason, Houston innovation news may have fallen through some of the cracks.

In this roundup of short stories within Houston innovation, Greentown Labs makes a big announcement, new accelerator programs open applications, a UH-born technology wins big, and more.

Greentown Houston is opening next month. Photo via GreentownLabs.com

Last Earth Day, the City of Houston launched its first Climate Action Plan. This Earth Day, the Greentown Houston is opening its doors. On Thursday, April 22, from 2 to 3:30 pm, Greentown Labs is hosting a virtual event to mark the grand opening.

At the event, attendees will be able to meet startups that are a part of the program, hear from energy and civic leaders, catch the latest Greentown partners, and watch the building's ribbon cutting. The event is free and registration is open.

"Greentown Houston is our first out-of-state expansion, and we have already welcomed more than 20 startup members and more than 20 Founding and Grand Opening partners," reads a recent announcement from Greentown. "Located in the city's Innovation District, Greentown Houston will provide more than 40,000 sq. ft. of prototyping lab, office, and community space for about 50 climatetech startups, totaling 200-300 employees."

The Rice Alliance Clean Energy Accelerator's inaugural cohort will be held virtually but will eventually be housed in The Ion.. Courtesy of Rice University

The Rice Alliance for Technology and Entrepreneurship has opened applications for its inaugural cohort for the recently announced Clean Energy Accelerator. The program will be held virtually this summer from June to September but will eventually be hosted out of The Ion.

At the conclusion of the program, the cohort will present in a Demo Day in conjunction with the 19th annual Rice Alliance Energy Venture Forum.

Applications are due by April 14 and interested parties can apply online.

A UH-born device won a $25,000 investment at a SXSW event. Photo via UH.edu

A University of Houston professor took home an innovation prize and $25,000 investment from the Southwest National Pediatric Device Innovation Consortium's Pediatric Device Prize at this year's SXSW. The UH-born device is the Pediatric Lower-Extremity Gait System known as P-LEGS which is a mobility assistant, rehabilitation platform and diagnostic tool designed to help children with motor disabilities. It won one of two prizes out of 18 devices.

The principal investigator for the project, Jose Luis Contreras-Vidal, is a Hugh Roy and Lillie Cullen Distinguished Professor of Electrical and Computer Engineering and the director of UH's BRAIN Center. Other team members include graduate student lead, David Eguren, as well as Alexander Steele, Yang Hu, Krishna Sarvani Desabhotla, Swagat Bhandari, Lujayna Taha, Nivriti Sabhnani, and Allen Shen.

"We were excited and honored to have been selected by the SWPDC for this award," Eguren says in a news release. "The award will be valuable in helping us continue device development and testing."

Halliburton Labs is looking for its next cohort. Photo courtesy of Halliburton

A new corporate accelerator has announced that its latest round of startup applications is open. Halliburton Labs looking for startups for its next cohort, and applications are due on April 23.

"We're excited to identify technology entrepreneurs with ready-to-scale solutions in energy generation, storage, distribution, conservation, and the circular economy," says Dale Winger, managing director of Halliburton Labs, in a news release. "Our program provides critical resources, including technical and operational expertise across numerous hardware disciplines and a global business network, to help participants advance their products, prepare for further scale and position for additional financing."

Halliburton Labs will make their selections by the ongoing program's pitch day, which is slated for May 21. The Halliburton Labs Finalist Pitch Day will be a part of the Houston Tech Rodeo.

To apply to participate, click here.

This is the first high-resolution, color image to be sent back from NASA's Perseverance Mars rover after its landing Feb. 18, 2021. Credit: NASA/JPL-Caltech

The Translational Research Institute for Space Health known as TRISH recently announced seven new members to its Scientific Advisory Board. The Houston-based, NASA-funded organization is focused on cultivating space health innovations.

"We are at the cusp of space becoming more accessible to regular people. We are working toward safeguarding the health of all humans -- astronauts exploring deep space and people with preexisting conditions that want to experience space for short periods," says TRISH Director Dorit Donoviel. "TRISH's diverse advisory board members will help us focus our resources on the most impactful health technology and science innovations."

According to a press release, the newly appointed members are:

They join existing members:

Link:

University of Houston to install nanotech-coated air filters on campus to prevent COVID-19 spread - InnovationMap

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Brain implant firm wins 12m with Manchester nanotech – The University of Manchester

Posted: at 4:39 am

A collaboration between two Barcelona institutions and theNanomedicine Labat The University of Manchester- aimed at treating brain disorders such as epilepsy and Parkinsons Disease - has secured 12m in funding, one of the largest investments to date in the European medical nanotechnology industry.

INBRAIN Neuroelectronics is a spin-out company from the Catalan Institute of Nanoscience and Nanotechnology (ICN2) and the Catalan Institution for Research and Advanced Studies (ICREA), partners of - and supported by - the European Commissions Graphene Flagship programme.

INBRAINs work involves the decoding of brain signals by implantinginnovative, flexible nanoscale graphene electrodes, developed in conjunction with researchers at Manchesters Nanomedicine Laband theNational Graphene Institute(NGI).

These signals may then be used to produce a therapeutic, personalised response for patients with epilepsy, Parkinsons and other neurological disorders.

This new investment is co-led by Barcelona-based venture capitalists Asabys Partners and Alta Life Sciences, joined by: Vsquared Ventures, a deep tech-focused early-stage venture capitalist based in Munich; TruVenturo GmbH, Germanys most successful internet company builders; and CDTI, the Spanish Ministry of Science and Innovation.

Kostas Kostarelos, Professor of Nanomedicine at The University of ManchesterFaculty of Biology, Medicine and Health, the NGI and co-founder of INBRAIN Neuroelectronics, said: This investment for INBRAIN is a testament that graphene-based technologies and the properties of 2D materials have a unique set of propositions to offer for clinical medicine and the management of neurological disorders.

This did not happen suddenly, though, or by a stroke of good luck in the lab, he added. It is the culmination of many years of persistent and consistent work between at least three research institutions, one of which is the Nanomedicine Lab in Manchester, the other two in Barcelona, all working closely and cooperatively under the critically important funding of the Graphene Flagship project.

The Graphene Flagship is the European Commissions 1bn research funding spearhead and a key partner of ICN2, ICREA and Graphene@Manchester, with a mission is to accelerate advanced 2D materials research and commercialisation.

The high incidence of brain-related diseases worldwide and their huge annual cost - around 700bn in Europe alone, according to a 2010 study by the European Brain Council - call for greater investments in basic research in this field, with the aim of developing new and more efficient therapeutic and diagnostic tools.

Existing brain interfaces are based on metals such as platinum and iridium, which significantly restrict miniaturisation and signal resolution, and are therefore responsible for considerable side effects.

As a consequence, there is a 50% rejection rate of these implants in candidate patients. INBRAIN Neuroelectronics has a disruptive technology proposition, based on the novel material graphene, that overcomes the current limitations of metal-based neural interfaces.

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Brain implant firm wins 12m with Manchester nanotech - The University of Manchester

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Nanotech-enabled Aircraft Power Solutions Market to witness Huge Growth with Projected Airbus, NASA, Sila Nanotechnologies, Cella Energy The Bisouv…

Posted: at 4:38 am

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Nanotech-enabled Aircraft Power Solutions Market to witness Huge Growth with Projected Airbus, NASA, Sila Nanotechnologies, Cella Energy The Bisouv...

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