百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

Graphene's ultimate stretchability and 'realistic' strength discovered

(Nanowerk News) The realistic mechanical properties of monolayer graphene have been successfully studied by a new method developed by a research team led by Dr Lu Yang, Associate Professor of Department of Mechanical Engineering at City University of Hong Kong (CityU). The groundbreaking discovery will promote the application of graphene in different areas, such as the touch monitor on flexible mobile phones.
Dr Lu’s research achievement has been published in the prestigious international journal Nature Communications ("Elastic straining of free-standing monolayer graphene").
Dr Lu Yang and his nanomechanical testing platform
Dr Lu Yang and his nanomechanical testing platform. (Image: CityU)
A two-dimensional carbon substance, graphene is the strongest material known with excellent electrical and thermal conductivity. Hence, it is deemed a "super material", ideal for many fields, for example, transistors, biosensors and batteries.
Graphene’s structure as a single layer of atoms has made it extremely difficult for scientists to test its actual mechanical properties such as elasticity and tensile strength. The studies in this area so far have covered only its ideal limits by local indentation experiments and theoretical calculations.
“No one has really stretched a large-area, free-standing monolayer graphene and tested its elastic tensile properties,” Dr Lu said.
Over the years, Dr Lu has researched the mechanical properties of various nanomaterials. His research team has successfully developed a new method for transferring large-area graphene onto his unique nanomechanical testing platform, performing in situ tensile tests in a scanning electron microscope to study changes in stretching and shaping.
“One major challenge in our study is how to transfer and lay an extremely light and thin monolayer graphene sample onto a testing platform without damage, and apply the strain evenly when stretching it,” Dr Lu said. grapheneMonolayer graphene suspended between the device gap in the testing platform.
The experiment showed that the tensile strength of chemical vapour deposition (CVD)-grown monolayer graphene can reach 50 to 60 GPa (gigapascal), with elastic strain up to 6%, and the measured Young’s modulus (or the “elastic modulus”) is 920 GPa, which is very close to the theoretical value of ∼1,000 GPa. Pascals are units of measurement for stress.
Monolayer graphene suspended between the device gap in the testing platform
Monolayer graphene suspended between the device gap in the testing platform. (Image: CityU)
“It took us nearly four years to overcome a lot of difficulties for the experiment, but our work has revealed the realistic mechanical properties of graphene for engineering relevance,” Dr Lu said.
Its strength and stretchability make graphene a suitable material for manufacturing flexible electronic devices, such as transistors with better robustness, organic light-emitting diodes, and other mechanical components.
It can also be used for the production of composite materials and in the areas of biomedical research, aviation and national defence.
Dr Lu said he was grateful to CityU for providing top-notch facilities for his team to conduct their research, such as the Nano-Manufacturing Laboratory at the CityU Shenzhen Research Institute, the Centre for Super-Diamond and Advanced Films, and the Centre for Advanced Structural Materials.
In addition, CityU’s emphasis on interdisciplinary collaboration helped his research. “Our experiment required experts from the disciplines of mechanics, materials science, chemistry and physics to work together, and the outstanding talents in these fields can be readily found at CityU,” Dr Lu said.
Source: City University of Hong Kong
Subscribe to a free copy of one of our daily
Nanowerk Newsletter Email Digests
with a compilation of all of the day's news.
XYZ Piezo Nanopositioning Stages
 
 
送58百家乐官网的玩法技巧和规则| 百家乐官网赌机破解| 优博百家乐官网yobo88| 百家乐赢家球讯网| 合法赌博网站| 百家乐一般的庄闲比例是多少| 京城国际娱乐城| 战神百家乐官网的玩法技巧和规则| 香港六合彩资料| 百家乐投注很不错| 百家乐官网赌场信息| 二八杠小游戏| 24山向吉凶山运| 玩百家乐官网五湖四海娱乐城| 信誉棋牌评测网| 娱乐城百家乐怎么样| 百家乐官网家居 | 百家乐服务区| 豪享博百家乐官网的玩法技巧和规则| 常宁市| 华泰百家乐的玩法技巧和规则 | 至尊百家乐官网奇热网| 作弊百家乐赌具| 网上百家乐可靠| 百家乐官网打印机破解| 枝江市| tt娱乐城开户| 济州岛百家乐的玩法技巧和规则| 百家乐官网操作技巧| 百家乐官网微笑不倒| 百家乐官网微笑投注| 立博百家乐的玩法技巧和规则| 网上百家乐危险| 百家乐官网庄89| 百家乐官网那个平台信誉高| 葡京赌场| 大发888官方网站下载| 葡京百家乐的玩法技巧和规则| 试玩百家乐官网游戏机| 百家乐官网开户最快的平台是哪家| 阿坝县|