Artificial Electronic Superskin: Introduction
Artificial electronic superskin is a solar powered skin made of super stretchy, flexible, and durable polymer solar cells that are able to generate electricity
Artificial electronic superskin consists of thin transistors, made of a highly elastic rubber layer, which and are molded into a grid of tiny inverted pyramids. These thin transistors are the brain of the artificial superskin, as they are touch sensitive and are utilized to detect certain markers or a certain protein that can be associated with some kind of disease to identify.
Artificial electronic superskin is employed to detect a particular biological molecule or even the touch-down pressure of a fly. It is expected to help detect a disease by sensing the biomarker proteins that are correspondent to individual diseases. Additionally, fitting robots with superskins and enabling the robots to detect by touch, whether a person has some disease-confirming biomarker, or sense the sweat of a person and conclude the person is drunk.
Sensors in the artificial electronic skin contain several hundred thousand to 25 million pyramids per square centimeter that correspond to the desired level of sensitivity of the skin
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Key Drivers of Global Artificial Electronic Superskin Market
Rise in transition toward renewable energy devices is likely to offer significant opportunities to manufacturers of artificial electronic superskin, as it uses solar energy for generation of electricity. This is expected to drive the global market for artificial electronic superskin during the forecast period.
Rise in spread of COVID-19 pandemic has compelled several nations to upgrade their health infrastructure. Artificial electronic superskins would prove helpful for medical and healthcare facilities around the world, as it is able to detect certain diseases and eliminate infections in humans caused via touch.
Rise in investment in medical and healthcare infrastructure around the globe is estimated to propel the artificial electronic superskin market during the forecast period
Restraints of Global Artificial Electronic Superskin Market
Artificial electronics superksins are not readily available and could be extremely expensive when available, which in turn is likely to hamper the artificial electronic superskin market during the forecast period
Maintenance of electronics superskins could be even more expensive and defects in robots incorporated with electronic skin could lead to accidents, which is anticipated to further restrain the market during the forecast period.
Major Developments
Researchers at the National University of Singapore have developed an artificial electronic superskin called “Asynchronously Coded Electronic Skin” (ACES). The innovative technology enables simultaneous and quick transmission of sensory perception information from over 10,000 sensors with high precision and resolution.
In November 2019, researchers from Rensselaer Polytechnic Institute in New York, U.S., developed a new method to 3D print living skin with built-in blood vessels. This living skin construct is cultured in vitro and develops into an interconnected microvascular network underneath a layered barrier of skin cells.
COVID-19 Impact Analysis
The global economy has been hampered by the measures put in place to contain the COVID-19 pandemic. Medical healthcare and solar industries are also estimated to face immediate challenges due to the COVID-19 pandemic such as difficulty in adhering to the social distancing norms, shortage of manpower, lack of parts & equipment, and discerning expenditure by end-users.
Currently, the solar industry imports almost 80% of all of its equipment and parts in the value chain from China. The COVID-19 pandemic has adversely affected the manufacturing capacities of China. Most ship container companies have stopped functioning out of ports in China. Major economies such as India have stopped transportation of goods from China.
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Europe to Hold Major Share of Global Artificial Electronic Superskin Market
Based on region, the global artificial electronic superskin market can be classified into North America, Asia Pacific, Europe, Latin America, and Middle East & Africa
Europe is likely to dominate the global artificial electronic superskin market during the forecast period. High investments, especially by governments of countries such as Germany, and technological advancements are projected to drive the market in the region from 2020 to 2030.
On the other hand, in the U.S. in North America, the artificial electronic superskin market is likely to benefit from multi-year federal tax incentives and several state-level policies that are estimated to promote medical and healthcare infrastructure in the next few years.
Asia Pacific is projected to offer significant opportunities to the global artificial electronic superskin market during the forecast period, due to a rise in concerns about epidemic and pandemic disease. Additionally, government tariffs and policies promoting the use of solar technology are expected to propel the artificial electronic superskin market in Asia Pacific.
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