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Recent progress in the piezoelectricity of molecular ferroelectrics

机译:压电的最新进展分子铁电体

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Molecular ferroelectrics (MOFEs) with excellent piezoelectricity are highly desirable for their easy and environmentally friendly processing, light weight, low processing temperature, and mechanical flexibility. However, although 100 years have passed since the discovery of the ferroelectric effect in 1920, MOFEs with a piezoelectric coefficient comparable to those of the most widely used piezoelectric ceramics, such as barium titanate (~190 pC N~(-1)), have rarely been found. Only in recent years has this situation changed. A series of high-performance piezoelectric MOFEs have been designed and synthesized, approaching or even exceeding some inorganic piezoelectric ceramics. Reviewing on the basis of piezoelectric MOFEs reported, we summarize several methods and strategies to synthesize performance-enhanced and application-aimed piezoelectric MOFEs, with potential as candidates for next-generation medical, micromechanical, and biomechanical devices.
机译:分子铁电体(mof)太好了压电的非常不错简单和环保处理,重量轻,加工温度低,机械的灵活性。年已经过去了自从发现的铁电效应在1920年,财政部用压电系数可比的最广泛使用的压电陶瓷,等钛酸钡(~ 190 pC N ~(1)),已经很少被发现。情况发生了变化。压电财政部已经设计和合成、接近甚至超过一些无机压电陶瓷。压电财政部报告的基础上,我们总结一些方法和策略合成performance-enhanced和application-aimed压电mof,潜在的作为下一代的候选人医疗、微机械、生物力学设备。

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