School of Materials Science and Engineering, Tianjin Key Laboratory of Metal and Molecule-Based Material Chemistry, Nankai University, Tianjin, 300350, China.
College of Materials and Metallurgy, Guizhou University, Guiyang, 550025, China.
Small. 2022 Jan;18(3):e2103829. doi: 10.1002/smll.202103829. Epub 2021 Nov 25.
Hybrid organic-inorganic piezoelectrics have attracted attention due to their simple synthesis, mechanical flexibility, and designability, which have promising application potential in flexible sensing and self-powered energy harvesting devices. Although some hybrid piezoelectrics are discovered, most of their structures are limited by the perovskite-type and often contain lead. Herein, the synthesis, structure, and piezoelectric properties of a new hybrid lead-free metal halide, (BTMA) CoBr (BTMA = benzyltrimethylammonium) are reported. The experimental and theoretical results demonstrate that this material simply composed of [CoBr ] tetrahedra and BTMA cations exhibits significant piezoelectricity (d = 5.14, d = 12.40 pC N ), low Young's and shear moduli (4.11-17.56 GPa; 1.86-7.91 GPa). Moreover, the (BTMA) CoBr /PDMS (PDMS = polydimethylsiloxane) composite thin films are fabricated and optimized. The 10% (BTMA) CoBr /PDMS-based flexible devices show attractive performance in energy harvesting with an open-circuit voltage of 19.70 V, short-circuit current of 4.24 µA, and powder density of 11.72 µW cm , catching up with those of piezoelectric ceramic composites. Meanwhile, these film devices show excellent capability in accurately sensing human body motions, such as finger bending and tapping. This work demonstrates that (BTMA) CoBr and related piezoelectric lead-free halides can be promising molecular materials in modern energy and sensing applications.
由于其合成简单、机械柔韧性和可设计性,混合有机-无机压电体引起了人们的关注,在柔性传感和自供电能量收集器件中具有广阔的应用前景。尽管已经发现了一些混合压电体,但它们的大多数结构都受到钙钛矿型的限制,而且往往含有铅。在此,报道了一种新的无铅混合金属卤化物 (BTMA) CoBr(BTMA = 苄基三甲基铵)的合成、结构和压电性能。实验和理论结果表明,这种由 [CoBr ]四面体和 BTMA 阳离子简单组成的材料表现出显著的压电性(d = 5.14,d = 12.40 pC N),杨氏模量和剪切模量较低(4.11-17.56 GPa;1.86-7.91 GPa)。此外,制备并优化了 (BTMA) CoBr /PDMS(PDMS = 聚二甲基硅氧烷)复合薄膜。基于 10% (BTMA) CoBr /PDMS 的柔性器件在能量收集方面表现出优异的性能,开路电压为 19.70 V,短路电流为 4.24 µA,粉末密度为 11.72 µW cm,可与压电陶瓷复合材料相媲美。同时,这些薄膜器件在精确感应人体运动方面表现出出色的性能,例如手指弯曲和敲击。这项工作表明,(BTMA) CoBr 和相关的无铅卤化物压电体有望成为现代能源和传感应用中的有前途的分子材料。