综合一区欧美国产,99国产麻豆免费精品,九九精品黄色录像,亚洲激情青青草,久久亚洲熟妇熟,中文字幕av在线播放,国产一区二区卡,九九久久国产精品,久久精品视频免费

USEUROPEAFRICAASIA 中文雙語Fran?ais
Education
Home / News

Tiny tech provides massive breakthroughs

chinadaily.com.cn | Updated: 2017-05-09 07:40

New breakthroughs have been recently made on producing transient electronics under low-temperature and water-free conditions by Professor Huang Xian from Tianjin University.

Huang and his collaborating researcher, Professor Pan Heng from the Missouri University of Science and Technology, describe their discovery in papers titled Mechanically Milled Irregular Zinc Nanoparticles for Printable Bioresorbable Electronics and Low-Cost Manufacturing of Bioresorbable Conductors by Evaporation–Condensation-Mediated Laser Printing and Sintering of Zn Nanoparticles on Small. These were published in the peer-reviewed interdisciplinary journal Small and Advanced Material, an international scientific journal covering materials science, respectively.

Tiny tech provides massive breakthroughs

The paper Mechanically Milled Irregular Zinc Nanoparticles for Printable Bioresorbable Electronics was published in Small as a cover story. [Photo/Tianjin University]

Transient electronics have been widely used in implantable medical devices and environmental friendly products in recent years as they can both dissolve in people’s bodies and water.

However, such devices have not realized mass production because of the sophisticated production processes and rare materials needed to make them. Furthermore, such devices are sensitive to humidity and temperature, which adds to the difficulty of producing and storing them.

Huang and Heng used a fine-tuned ball milling approach to obtain irregular zinc nanoparticles that are suitable for printable electronics, and achieved highly conductive zinc patterns through photonic sintering.

Tiny tech provides massive breakthroughs

These graphics outline the process used to achieve conductive patterns. [Photo/Tianjin University]

They also figured out a technique to achieve patterns through laser scanning, which can control the conductivity of patterns.

Both techniques will promote the application of bioresorbable electronics for use in healthcare, environmental protection, and consumer electronics by contributing various environmentally friendly sensors and circuits.

BACK TO THE TOP
Copyright 1995 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
河池市| 金华市| 灌阳县| 宁武县| 柳江县| 喀喇沁旗| 都江堰市| 华亭县| 北宁市| 柳河县| 璧山县| 南乐县| 宁乡县| 湘阴县| 樟树市| 离岛区| 阳朔县| 双城市| 蓬安县| 新安县| 大邑县| 石阡县| 大宁县| 侯马市| 日土县| 镇雄县| 德保县| 南雄市| 松滋市| 常州市| 大悟县| 获嘉县| 酒泉市| 阳曲县| 芦溪县| 上高县| 华池县| 巴林左旗| 淳化县| 通化县| 台前县|