六合彩开奖结果-六合彩百万网址_百家乐游戏种类_夜明珠全讯网ym202 (中国)·官方网站

Southeast University Research Team Makes a Major Breakthrough in Molecular Piezoelectrics

Publisher:吳嬋Release time:2017-07-27Number of Views:870




Recently, the research team led by Prof. Xiong Rengen, research group led by Prof. You Yumeng, and their cooperators have made important progress in the field of molecular ferroelectric and piezoelectric materials. Research results were published on the top academic journal Science on July 21st, 2017.

Piezoelectric materials allow conversion between electricity and mechanical stresses. The most efficient piezoelectric materials are ceramics such as BaTiO3 or PbZrO3, which are also extremely stiff. You et al. identified an organic perovskite structured piezoelectric material that is far more pliable yet has a piezoelectric response similar to that of traditional ceramics. This material may be a better option to use as a mechanical sensor for flexible devices, soft robotics, biomedical devices, and other micromechanical applications that benefit from a less stiff piezoelectric material.

Molecular piezoelectrics are highly desirable for their easy and environment-friendly processing, light weight, low processing temperature, and mechanical flexibility. However, although 136 years have passed since the discovery in 1880 of the piezoelectric effect, molecular piezoelectrics with a piezoelectric coefficient d33 comparable with piezoceramics such as barium titanate (BTO; ~190 picocoulombs per newton) have not been found. We show that trimethylchloromethyl ammonium trichloromanganese(II), an organic-inorganic perovskite ferroelectric crystal processed from aqueous solution, has a large d33 of 185 picocoulombs per newton and a high phase-transition temperature of 406 kelvin (K) (16 K above that of BTO). This makes it a competitive candidate for medical, micromechanical, and biomechanical applications.

The publication of the research results brings new directions for material research, and also indicates that China is now leading the way in this field of research.

  


新时代百家乐娱乐城| 玩百家乐官网游戏的最高技巧 | 尚义县| 百家乐官网博赌城| 蓝盾百家乐平台租用| 皇冠赌球| 稳赢的百家乐官网投注方法| 百家乐现金网平台排行榜| 麻阳| 百家乐有送体验金| 沅陵县| 澳门百家乐有限公司| 澳门金沙国际| 网上百家乐作弊下载| 优博在线娱乐城| 平台百家乐的区别| 大发888娱乐场下载 17| 巴特百家乐官网的玩法技巧和规则| 大发888娱乐场下载客户端| 百家乐官网有人赢过吗| 香港百家乐的玩法技巧和规则 | 百家乐咨询网址| 棋牌真钱游戏| 嘉禾百家乐官网的玩法技巧和规则| 大发888com| 百家乐10法则| 赚钱的棋牌游戏| 百家乐官网赚水方法| 德州扑克胜率| 百家乐官网科学打| 大发888有破解的没| 1月24进房子风水好吗| 大同市| V博百家乐的玩法技巧和规则| 百家乐官网斗地主炸金花| 博盈娱乐场| 百家乐投注信用最好的| 澳门百家乐官网玩法心得技巧| 神娱乐百家乐的玩法技巧和规则 | 网上百家乐官网好玩吗| 百家乐那里信誉好|