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首页> 外文期刊>Materials Chemistry Frontiers >High-temperature enantiomeric azobenzenebased photoisomerized piezoelectrics:4-(phenyldiazenyl)anilinium)D-and L-tartrate
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High-temperature enantiomeric azobenzenebased photoisomerized piezoelectrics:4-(phenyldiazenyl)anilinium)D-and L-tartrate

机译:高温对映体azobenzenebasedphotoisomerized压电材料:4 - (phenyldiazenyl) anilinium) d和L-tartrate

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摘要

Rochelle salt,as the initiator of piezoelectrics and ferroelectrics,has been a bridge between homochirality as well as piezoelectricity and ferroelectricity since the late 19th century.One can greatly increase the hit rate of constructing non-centrosymmetric or even polar materials by using enantiomeric components.It should be highlighted that the marriage of photoisomerization and piezoelectricity can endow molecular piezoelectrics with unique optical phenomena,which may realize multichannel encryption and detection.However,it is still a great challenge to design a photoisomerized piezoelectric.Here,under the guideline of introducing homochirality,we have designed a pair of hightemperature enantiomeric azobenzene-based piezoelectrics,4-(phenyldiazenyl)anilinium)D-and L-tartrate(D-1 and L-1),whose piezoelectric behaviors persist up to 460 K.Compared to the racemic compound 4-(phenyldiazenyl)anilinium)rac-tartrate(rac-1)which adopts the centrosymmetric space group P%1,the selection of homochiral anions makes the enantiomers crystallize in an enantiomeric-polar space group and thereby induce piezoelectricity and potential ferroelectricity.As piezoelectric materials,the enantiomers show relatively large piezoelectric responses of 7 pC per N,comparable to that of Rochelle salt.Besides,D-1 and L-1 possess the ability of photoisomerization;to our knowledge,this is the first azobenzene-based hightemperature enantiomeric piezoelectric which shows a photoisomerization phenomenon upon 450 nm irradiation.This combination of piezoelectricity and photoisomerization may support further exploration of optically-controlled smart devices for multi-channel information encryption and signal detection.
机译:罗谢尔盐,作为压电体的发起者和铁电体之间的一座桥梁homochirality以及压电19世纪后期以来的铁电性。可以极大地提高建设的命中率呢non-centrosymmetric甚至极性材料使用对映体组件。突出的婚姻光异构化和压电可以赋予压电材料具有独特的光学分子现象,可以实现多通道加密和检测。设计一个photoisomerized巨大的挑战压电。引入homochirality,我们设计了一对高温的旋光异构体azobenzene-based压电体,4 - (phenyldiazenyl) anilinium) d和L-tartrate (d 1和l - 1),其压电行为持续到460 K。外消旋化合物

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