Domestic flexible wearable medical equipment comes out

Author: Dr Fang Release Date: 2014-02-20

Recently, the research team led by Qiu Zhijun and Professor Liu Wei, an associate professor at the School of Information Science and Engineering of Fudan University, made breakthroughs in revealing the stability mechanism of organic thin film transistors (OTFTs). The related results will accelerate the large-scale application of flexible electrons. Mass production of wearable electronic devices is possible. Related papers were published in the international authoritative academic journal Nature-Communication published on January 27.
Information technology will enter the era of the Internet of Things, and the foundation of the Internet of Things is the hundreds of millions of information sensing devices. The unique flexibility and extensibility of flexible electronics is the key technology for connecting “things” and “clouds”. Wearable electronics are also closely related.
Since the beginning of the last century, large-area flexible organic thin-film transistors (OTFTs) and related integrated circuits have begun to be favored by researchers, but they have not been used on a large scale. This is because there are two major obstacles to this technology: insufficient current drive capability and mobility. Low; poor reliability and short life. Since 2008, the research team of Fudan University has started a series of studies with the University of Uppsala, Sweden and the Royal Institute of Technology in Sweden. Finally, the internal mechanism leading to the change of OTFT performance has been discovered, and the water-oxygen electrochemical reaction and organic film carriers are proposed. Interaction model. This model can solve the obstacles in the industrial use of flexible organic thin film transistors.
At present, Bio-Patch, a flexible wearable medical device jointly developed by Fudan University and the Royal Institute of Technology in Sweden, has been attached to the skin surface like a band-aid to measure human body ECG and body temperature information in real time. In the future, wearable smart medical devices will increasingly enter the lives of ordinary people.

Source: Pharmaceutical Economics

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