Le Lézard
Classified in: Health, Science and technology

Back to One's Senses: Incheon National University Researches Novel Artificial Skin for Restoring Temperature Sensory Functions


INCHEON, South Korea, Jan. 19, 2022 /PRNewswire/ -- As the largest "organ" of the human body, the skin is a major interface in our interactions with the world around us. Skin contains specialized chemical, mechanical, and temperature biosensors that are critical for detecting harmful stimuli. Although the skin excels at repairing itself when damaged, acute injuries can permanently eliminate some or all of its sensory capabilities over the affected area, creating a "blind spot."

Because current skin repair therapies cannot restore such losses of sensitivity, some researchers have turned to artificial skin as a viable alternative. Flexible artificial skin can accommodate bio-compatible electronic devices and sensors to imitate the natural functions of human skin. However, one crippling limitation of such wearable electronics is that they require an external energy source, like batteries.

In a recent study led by Professor Joondong Kim of Incheon National University, Korea, a research team developed an innovative type of artificial skin containing a self-powered temperature sensing platform. Their biosensing device addresses the key limitations of previous approaches and offers realistic temperature sensing capabilities by mimicking the way human skin reacts to extreme stimuli. Their paper was made available online on November 8, 2021, and will be published in Volume 91 of Nano Energy in January of 2022.

The proposed artificial skin was produced using flexible and transparent thin layers of zinc oxide (ZnO), nickel oxide (NiO), and silver nanowires that, together, form a photovoltaic device. In other words, this artificial skin converts ultraviolet light into useful electricity, which can be used to power wearable electronics in a straightforward and sustainable way.

The temperature sensing capabilities of the proposed artificial skin come from the use of ZnO, which generates an electrical current that increases with temperature (pyrocurrent). What's remarkable is that this sensing platform has inherent memory properties, meaning that the pyrocurrent is more or less amplified depending on previous exposure to extreme temperatures. In a way, this mimics some of the sensory memory mechanisms that human skin has and on which our body relies to keep away from harmful stimuli. "Artificial skin could become an immediate solution for people with damaged skin sensors so that they can once again experience the natural environment around them with ease," explains Prof. Kim.

These findings will help guide the design of artificial skin and wearable electronics for a variety of applications, as Prof Kim remarks, "Our work paves the way for the combination of biosensing and built-in memory capabilities via a self-powered architecture, which could find uses in artificial thermoreceptor sensors, self-powered e-skin, artificial biomedical sensors, artificial sensing and memory, and thermal memory." Let us hope more researchers get their skin in the game so that this technology progresses even further!

Reference

Title of original paper: Transparent photovoltaic skin for artificial thermoreceptor and
nociceptor memory

Journal: Nano Energy

DOI: https://doi.org/10.1016/j.nanoen.2021.106676

About Incheon National University
Website: http://www.inu.ac.kr/mbshome/mbs/inuengl/index.html

Media contact:
Joondong Kim
[email protected]
82 32 835 8467

SOURCE Incheon National University


These press releases may also interest you

at 21:00
On the 17th of April 2024, the Centre for Trusted Internet and Community (CTIC) at the National University of Singapore (NUS) launched a groundbreaking new initiative, "Living Well Digitally" (https://ctic.nus.edu.sg/living-well-digitally/)....

at 20:50
MiniTool Software Limited has released a new version of its video making program ? MiniTool MovieMaker 7.3.0 with brand-new resources to decorate videos effortlessly....

at 20:35
RevolKa Ltd. (Norio Hamamatsu, President & CEO), a venture-backed biotech company providing a game-changing protein engineering technology platform and La Jolla Institute for Immunology (LJI) (Erica Saphire, President & CEO) agreed to start a...

at 20:00
OKX Ventures, the investment arm of leading crypto exchange and Web3 technology company OKX, today announced its participation in the 'Runes Incubator.' This program, initiated by OnePiece Labs and supported by Merlin Chain and Franklin Templeton,...

at 20:00
SK hynix Inc. (or "the company", www.skhynix.com) announced today that it has recently signed a memorandum of understanding with TSMC for collaboration to...

at 19:27
ShipSaving, a fast-growing shipping platform recognized in the 2023 Deloitte Technology Fast 500tm, proudly announces a groundbreaking development as the first multi-carrier shipping company to offer UPS no-label shipping. This innovative feature...



News published on and distributed by: