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作为具有光控超分子活性的多功能光开关的硫代氨基脲。

Thiosemicarbazones as versatile photoswitches with light-controllable supramolecular activity.

作者信息

Sentürk Bengi, Butschke Burkhard, Eisenreich Fabian

机构信息

Department of Chemical Engineering and Chemistry, Institute for Complex Molecular Systems, Eindhoven University of Technology 5600 MB Eindhoven The Netherlands

Institute for Inorganic and Analytical Chemistry, University of Freiburg Albertstr. 21 79104 Freiburg Germany.

出版信息

Chem Sci. 2025 Jan 17;16(7):3130-3140. doi: 10.1039/d4sc08530b. eCollection 2025 Feb 12.

Abstract

Using photoswitchable molecules to manipulate supramolecular interactions under light illumination has driven advancements in numerous fields, allowing for the strategic alteration of molecular systems. However, integrating the moiety responsible for these interactions into the photochromic scaffold can be complex and may hamper the switching efficiency. We thus explored a simple class of organic molecules, namely thiosemicarbazones, featuring both a photoisomerizable C[double bond, length as m-dash]N double bond and a thiourea moiety capable of hydrogen bonding. The scalable two-step synthesis allowed us to prepare 23 thiosemicarbazones to systematically elucidate their optical properties. Attaching various functional groups, extended π-systems, and heterocycles enabled fine-tuning of their absorption profiles. UV light illumination converts thiosemicarbazones from the stable -isomer to the metastable -isomer, exhibiting both negative and positive T-type photochromism, a wide range of thermal half-lives, PSS values up to 92%, and high fatigue resistance. Substituting the C[double bond, length as m-dash]N moiety with a pyridinyl group stabilizes the -isomer intramolecular hydrogen bonding, confirmed by single-crystal X-ray analysis, and transforms thiosemicarbazones into bistable P-type photoswitches. Additionally, thiosemicarbazones dimerize or form aggregates through hydrogen bonding-a process that can be turned off or on with light. Overall, thiosemicarbazones offer tunable photochromic and supramolecular properties, rendering them a promising photoswitch for creating stimuli-responsive systems.

摘要

利用光开关分子在光照下操纵超分子相互作用推动了众多领域的发展,使得分子系统能够进行策略性改变。然而,将负责这些相互作用的部分整合到光致变色支架中可能很复杂,并且可能会阻碍开关效率。因此,我们探索了一类简单的有机分子,即硫代氨基脲,其既具有可光异构化的C=N双键,又具有能够形成氢键的硫脲部分。可扩展的两步合成法使我们能够制备23种硫代氨基脲,以系统地阐明它们的光学性质。连接各种官能团、扩展的π体系和杂环能够对其吸收光谱进行微调。紫外光照射可将硫代氨基脲从稳定的反式异构体转变为亚稳态的顺式异构体,表现出正负T型光致变色、广泛的热半衰期、高达92%的PSS值以及高抗疲劳性。用吡啶基取代C=N部分可稳定顺式异构体的分子内氢键,这一点通过单晶X射线分析得到证实,并将硫代氨基脲转变为双稳态P型光开关。此外,硫代氨基脲通过氢键二聚或形成聚集体——这一过程可以通过光来开启或关闭。总体而言,硫代氨基脲具有可调的光致变色和超分子性质,使其成为创建刺激响应系统的有前途的光开关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a23/11818103/3b0ef2298ba8/d4sc08530b-f1.jpg

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