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通过卤素交换调控室温磷光-磷光机械变色

Modulating Room-Temperature Phosphorescence-To-Phosphorescence Mechanochromism by Halogen Exchange.

作者信息

Takewaki Yoshika, Ogawa Takuji, Tani Yosuke

机构信息

Department of Chemistry, Graduate School of Science, Osaka University, Toyonaka, Japan.

出版信息

Front Chem. 2022 Jan 13;9:812593. doi: 10.3389/fchem.2021.812593. eCollection 2021.

Abstract

Modulating the stimulus-responsiveness of a luminescent crystal is challenging owing to the complex interdependent nature of its controlling factors, such as molecular structure, molecular conformation, crystal packing, optical properties, and amorphization behavior. Herein, we demonstrate a halogen-exchange approach that disentangles this problem, thereby realizing the modulation of room-temperature phosphorescence-to-phosphorescence mechanochromism. Replacing the bromine atoms in a brominated thienyl diketone with chlorine atoms afforded isostructural crystals; i.e., molecules with different halogen atoms exhibited the same molecular conformation and crystal packing. Consequently, amorphization behavior toward mechanical stimulation was also the same, and the phosphorescence of amorphous states originated from the same conformer of each diketone. In contrast, the phosphorescence properties of each conformer were modulated differently, which is ascribable to heavy atom effects, resulting in the modulation of the mechanochromism. Thus, halogen exchange is a promising approach for modulating the stimulus-responsive photofunctions of crystals involving spin-forbidden processes.

摘要

由于发光晶体的控制因素(如分子结构、分子构象、晶体堆积、光学性质和非晶化行为)具有复杂的相互依存性质,调节其刺激响应性具有挑战性。在此,我们展示了一种卤素交换方法,该方法解决了这个问题,从而实现了室温磷光到磷光机械变色的调制。用氯原子取代溴化噻吩基二酮中的溴原子得到了同构晶体;即,具有不同卤素原子的分子表现出相同的分子构象和晶体堆积。因此,对机械刺激的非晶化行为也是相同的,非晶态的磷光源于每个二酮的相同构象异构体。相比之下,每个构象异构体的磷光性质受到不同的调制,这归因于重原子效应,从而导致机械变色的调制。因此,卤素交换是一种很有前途的方法,可用于调节涉及自旋禁阻过程的晶体的刺激响应光功能。

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