首页> 外文期刊>The Journal of Organic Chemistry >Hybrid cis/trans Tetra-arylethenes with Switchable Aggregation Induced Emission (AIE) and Reversible Photochromism in the Solution, PMMA Film, Solid Powder, and Single Crystal
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Hybrid cis/trans Tetra-arylethenes with Switchable Aggregation Induced Emission (AIE) and Reversible Photochromism in the Solution, PMMA Film, Solid Powder, and Single Crystal

机译:具有可切换聚集诱导的发射(AIE)和溶液,PMMA膜,固体粉末和单晶的可逆光学变色的杂交CIS / Trans Tetra-arta-arta-arta-arta-arta-arta-arta-arta-arta-arta-arta-artherethenes

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摘要

How to efficiently design and synthesize multifunctional molecules is particularly challenging. In this presentation, we devote to constructing a kind of simple structures with composite functionalities through straightforward preparation. Starting from common commercially available materials, the titled cis/trans-tetraarylethenes can be conveniently obtained by a one-pot process under mild conditions. The different configurations were confirmed by H-1 NMR and single crystal data analysis. The trans-tetraarylethenes could be converted into cis-forms not only by photoirradiation but also by microwave irradiation, which provided us a new choice for isomeric conversion, especially in relation to light sensitivity. Results show that all the hybrid cis/trans-isomers performed switchable fluorescence and reversible photochromism in solution, PMMA film, solid powder, and single crystal. Moreover, these hybrid trans-tetraarylethenes could be utilized as photoswitchable media to tune the behavior of aggregation-induced emission (AIE) and aggregation-caused quenching (ACQ). These versatile properties are favorable for the potential applications in fluorescent photoswitches, nondestructive readout, and logic gates. We hope that our design strategy could provide a new protocol for constructing a kind of multifunctional molecules based some simple structure and convenient synthetic procedures.
机译:如何有效地设计和合成多功能分子特别具有挑战性。在这个演示中,我们致力于通过直接准备来构建具有复合功能的一种简单的结构。从常见的市售材料开始,通过在温和条件下通过单罐工艺方便地获得标题的顺式/反四芳基甲醚。通过H-1 NMR和单晶数据分析确认了不同的配置。不仅可以通过光辐射而且通过微波辐射转化为顺式形式,这为我们提供了异构转化的新选择,尤其是与光敏感性相关。结果表明,所有杂交CIS /反式异构体都在溶液,PMMA膜,固体粉末和单晶中进行可切换的荧光和可逆光学变色。此外,这些杂化反四芳烃可以用作光纤培养基,以调整聚集诱导的发射(AIE)和聚集导致淬火(ACQ)的行为。这些多功能性质有利于荧光照相,非破坏性读数和逻辑门中的潜在应用。我们希望我们的设计策略可以提供一种新的协议,用于构建一种基于一些简单的结构和方便的合成程序的多功能分子。

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