男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
USEUROPEAFRICAASIA 中文雙語Fran?ais
World
Home / World / Europe

Breakthrough ink discovery could transform printing

By ANGUS McNEICE | China Daily UK | Updated: 2017-08-24 17:01

Breakthrough ink discovery could transform printing

Black phosphorus in its crystal form. [Photo/China Daily]

Scientists from UK and Chinese universities have developed a new ink that could improve the performance of devices in the cutting-edge field of printed electronics.

Researchers from the Hybrid Nanomaterials Engineering Group at Cambridge University's Graphene Center successfully incorporated black phosphorus, a two-dimensional material similar to graphene, into ink that is compatible with conventional inkjet printers.

The team collaborated with scientists at the Chinese Academy of Sciences and Beihang and Zhejiang universities.

Graphene and black phosphorus are part of a growing family of revolutionary two-dimensional materials that are subject to intense scientific research due to their special properties.

Black phosphorus is not as conductive as graphene, though it is sensitive to a greater region of the electromagnetic spectrum including infrared, making it ideal for the development of optoelectronic devices.

Such devices that detect, source or control light include solar cells, light emitters, optical fibers, and sensors. The material may also have applications in technologies such as flexible, wearable electronics.

Hu Guohua, a PhD student at Cambridge University and lead author on the study-which has been published in the science journal Nature-said the team printed the new ink onto a range of materials.

"Printing on silicon means it can be used to make transistors or photodetectors," he told China Daily. "If we print on plastic, it can be used to make flexible devices and on glass for transparent devices."

The Chinese's interest in British research into the commercial application of two dimensional materials was highlighted by President Xi Jinping's visit to the National Graphene Institute in Manchester during his 2015 State visit to the UK.

The beneficial properties of black phosphorus have been known for some time, but until now there was no reliable way to convert the bulk crystals into a stable and printable ink.

"We think we can integrate printed black phosphorus onto existing silicon-based technologies like circuits, sensors, and interactive devices like wearable electronics," Hu said.

The team at Cambridge used a solution processing technique in order to break the bulk crystals into ultrathin nanomaterials, only a few atomic layers across.

In 2015, the same researchers developed a high-speed method for printed electronics using graphene, which was also led by Hu.

Most Viewed in 24 Hours
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
主站蜘蛛池模板: 达日县| 济南市| 松滋市| 从江县| 巴林右旗| 红河县| 利津县| 徐闻县| 宁安市| 额济纳旗| 博白县| 安泽县| 华亭县| 江陵县| 四平市| 沅江市| 澜沧| 灵寿县| 应城市| 彭州市| 拉萨市| 伊宁市| 共和县| 阆中市| 卢氏县| 菏泽市| 集贤县| 霍林郭勒市| 志丹县| 桃园市| 电白县| 洮南市| 安顺市| 壶关县| 奉节县| 屏东市| 铜梁县| 商洛市| 亚东县| 中方县| 南宫市| 新源县| 云林县| 玛纳斯县| 麟游县| 玉林市| 乐陵市| 寻乌县| 河曲县| 北碚区| 吴川市| 阿瓦提县| 绥阳县| 上高县| 平江县| 轮台县| 岳阳市| 台江县| 天全县| 沂源县| 茶陵县| 普安县| 措美县| 布尔津县| 仁寿县| 丰城市| 牙克石市| 德清县| 双江| 通江县| 南汇区| 兴仁县| 辉南县| 中江县| 奈曼旗| 重庆市| 同江市| 崇阳县| 双柏县| 灵台县| 泾源县| 阿合奇县|