Shape Dependence of Photoresponsive Molecular Crystals Composed of Naphthyl Acrylic Acid Stimulated by Solid-State [2 + 2] Photocycloaddition

Crystals Pub Date : 2024-05-23 DOI:10.3390/cryst14060492
Tian-Yuan Li, Yu-Ze Du, Tian-Yi Xu, Tian-Le Zhang, Fei Tong
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Abstract

Photomechanical molecular crystals, actuated by solid-state photochemical reactions, manifest a spectrum of mechanical motions upon light exposure, underscoring their prospective integration into the next generation of intelligent materials and devices. Utilizing the solid-state photodimerization of naphthyl acrylic acid as a paradigm, this study delved into the interplay between crystal morphology and reaction dynamics on the photomechanical responses of molecular crystals. Distinct crystal forms—bulk, microrods, and microplates—were cultivated through tailored crystallization conditions. While bulk crystals of naphthyl acrylic acid (NA) underwent shattering and splintering upon UV light exposure, the microplate counterparts displayed unique cracking patterns with fissures yet retained their overall structural integrity. In contrast, NA microrods underwent pronounced bending under identical irradiation conditions. These phenomena are attributed to the efficient lattice reconfiguration stemming from the [2 + 2] cycloaddition photochemical reaction within the crystals. An intermediate fluorescence enhancement was observed across all crystal types upon light exposure. Collectively, our results underscore the pivotal role of crystal shape in dictating photomechanical behavior, thereby heralding novel strategies for developing advanced photomechanical materials.
固态 [2 + 2] 光环加成法激发的萘丙烯酸光致分子晶体的形状依赖性
光机械分子晶体由固态光化学反应驱动,在光照射下表现出一系列机械运动,这表明它们有望集成到下一代智能材料和设备中。本研究以丙烯酸萘酯的固态光二聚化为范例,深入探讨了晶体形态与反应动力学之间的相互作用对分子晶体光机械响应的影响。通过定制的结晶条件,培养出了不同的晶体形态--块状、微晶块和微晶板。丙烯酸萘酯(NA)的块状晶体在紫外线照射下会发生碎裂和分裂,而微晶板的对应晶体则显示出独特的裂纹模式,但仍保持了整体结构的完整性。相比之下,NA 微晶块在相同的照射条件下会出现明显的弯曲。这些现象归因于晶体内[2 + 2]环加成光化学反应产生的高效晶格重构。所有类型的晶体在光照条件下都出现了中等程度的荧光增强。总之,我们的研究结果强调了晶体形状在决定光机械行为中的关键作用,从而预示着开发先进光机械材料的新策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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