赌球规则-赌球有假吗_免费百家乐过滤_全讯网信息丨五湖四海 (中国)·官方网站

Chemical & Engineering NEWS Reports the International Cooperation Achievements of NJUPT’s Doctoral Candidate

文章來源:南京郵電大學英文網發布時間:2020-06-17瀏覽次數:159

Zhou  Weixin, a doctoral candidate of School of Material Science and  Engineering of Nanjing University of Posts and Telecommunications  (NJUPT), has issued his research achievements on the world-renowned  periodical ACS Nano as the first author, which has then been given a  special report by the American Chemical& Engineering NEWS (C&EN)  with the headline “Breathable electronics could monitor our health  long-term”. Funded by the International Exchange Foundation for Building  First-Class Discipline, Zhou received united training at North Carolina  State University in 2018. He combined the previous porous electrode  preparation technology (ACS Applied Materials & Interfaces, 2016,  17, 11122; Advanced Materials Technologies, 2019, 4, 1800698) and the  epidermal electronic device of his research group at NCSU, and  successfully prepared the Gas-permeable, Ultrathin, Stretchable  Epidermal Electronics with Porous Electrodes. NJUPT is the first unit of  the paper. Professor Ma Yanwen and Professor Zhu Yong of NCSU are joint  corresponding authors. Postdoctoral researcher Yao Shanshan (North  Carolina State University, Stony Brook University, New York) is the  co-first author of the paper, doctoral candidate Wang Hongyu (NCSU) the  third, doctoral candidate Du Qingchuan (NJUPT) the fourth.

Epidermal  Electronics, an essential part of flexible electronic, is a kind of  electronic device which can be implanted into human body. This kind of  electronic device is widely used in medical treatment and health and  man-machine interface. However, the majority of epidermal electronics  known nowadays are prepared on non-porous solid polymer backings (such  as polydimethylsiloxane, polyethylene terephthalate and polyamide). On  account of the lack of gas permeability, these materials can not only  prevent the volatile components of skin secretion like sweat and tear  from volatilizing, but also can lower the comfortability of wearing.  What’s worse, they can result in allergy. Furthermore, these materials  are so hard that they cannot touch the skin tightly and may fall out  easily if they are worn for a long period, which is unfavorable for the  collection of bio-electricity signals. As a result, it’s significant to  develop new materials with soft breathability as backing for long-time application of epidermal electronics.

To  address the bottlenecks in the development, the research group combined  the experience of Professor Ma’s group in preparation of flexible  materials by respiration diagram method with Professor Zhu’s group in  the preparation and application of flexible electronics, and put forward  the theory of preparing epidermal electronics by means of respiration  diagram method, and finally successfully created the porous ultrathin  breathable electrode. This kind of electrode has a good permeability,  which allows the volatility of sweat. What’s more, it’s so thin (thinner  than 10 micrometer) that it can stick to human skin perfectly and  improve the monitor quality of biological signals. The research team has  achieved good results using these ultra-thin breathable electrodes in  bioelectric electrodes and touch sensor electrode, respectively.

It’s  worth mentioning that people can wear this material for longer than a  week without any allergies. This material can also be integrated on  fabrics as touching electrodes with Bluetooth controller, and then be  made into sleeve lets with function of wireless control, which can  control part of the functions of keyboards when corresponded with  computers.

Up  to now, this research has been reported by tens of foreign media. As of  press time, the Altmetric (which is used to evaluate the social  influence) of the paper has been up to 146.




百家乐庄闲最佳打法| 欢乐谷百家乐官网的玩法技巧和规则 | 舟山星空棋牌下载| 火箭百家乐官网的玩法技巧和规则| 百家乐凯时娱乐网| 百家乐官网天下第一缆| 百家乐局部| 七胜百家乐官网娱乐城总统网上娱乐城大都会娱乐城赌场 | 百家乐官网稳赚秘籍| 百家乐官网下注平台| 百家乐赌场怎么玩| 百家乐官网1个人| 威尼斯人娱乐cheng| 图木舒克市| 扑克百家乐麻将筹码防伪| 百家乐官网游戏新| 百家乐官网规则好学吗| 大发888 ber娱乐场下载| 百家乐的技术与心态| 网上百家乐官网有假的吗| 大发888 dafa888 gzsums| 百家乐官网赌博大揭密| 88娱乐城2| 亚洲百家乐博彩的玩法技巧和规则| 高尔夫百家乐官网的玩法技巧和规则| 至尊百家乐| 百家乐固定打法| 百家乐官网太阳城怎么样| 开心8| 新塘太阳城巧克力| 什么是百家乐的大路| 新皇冠娱乐城| 大发888手机| 博盈百家乐官网游戏| 哪个百家乐平台信誉好| 百家乐官网真人游戏赌场娱乐网规则| 免费百家乐官网奥秘| 博彩现金开户| 十三张娱乐城开户| 赌百家乐的玩法技巧和规则| 致胜百家乐软件|