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Achieving very bright mechanoluminescence from purely organic luminophores with aggregation-induced emission by crystal design

机译:通过晶体设计从聚集诱导的发射中获得纯有机发光体非常明亮的机械发光

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摘要

Although bright organic mechanoluminescence (ML) has been observed for a few luminophores with aggregation-induced emission (AIE), details of the positive effect of AIE on ML performance remain unclear and a feasible design principle for AIE-ML compounds has not yet been presented. Herein, an effective strategy for the molecular design of efficient AIE-ML materials is demonstrated, based on tetraphenylethene (TPE) building blocks with formyl substituents, which yield non-centrosymmetric crystal structures with prominent piezoelectric properties for molecular excitation combined with AIE features for intense emission. Following this approach, three AIE-active compounds have been developed and are found to show unique ML characteristics. Furthermore, the results of single crystal Xray analysis and density functional theory (DFT) calculations suggest that the ML performance would probably be further enhanced by creating molecules with larger dipolar moments and enhanced AIE properties.
机译:尽管已经观察到一些具有聚集诱导发射(AIE)的发光体的明亮的有机机械发光(ML),但仍不清楚AIE对ML性能的正作用的细节,并且尚未提出AIE-ML化合物的可行设计原理。在本文中,基于具有甲酰基取代基的四苯乙烯(TPE)结构单元,证明了一种有效的AIE-ML材料分子设计的有效策略,该结构单元可产生非中心对称的晶体结构,该结构具有突出的压电特性,可进行分子激发,并具有强大的AIE功能排放。按照这种方法,已经开发了三种具有AIE活性的化合物,并发现它们具有独特的ML特性。此外,单晶X射线分析和密度泛函理论(DFT)计算的结果表明,通过创建具有更大偶极矩和增强AIE特性的分子,可以进一步提高ML性能。

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