Department of Chemistry, University of Copenhagen, Universitetsparken 5, 2100, Copenhagen, Denmark.
Department of Chemistry, University of Florence, via della Lastruccia 3-13, 50019, Sesto F.No (FI), Italy.
Chemistry. 2020 Oct 21;26(59):13419-13428. doi: 10.1002/chem.202000530. Epub 2020 Sep 21.
Multi-photochromic systems incorporating individually addressable switching units are attractive for development of advanced data storage devices. Here, we present the synthesis and properties of a selection of such molecular systems incorporating the dihydroazulene/vinylheptafulvene (DHA/VHF) photo-/thermoswitch. The influence of the linker (meta-phenylene vs. azulene-1,3-diyl vs. thiophene-2,5-diyl) separating two DHA units on the switching properties was investigated. An azulene-1,3-diyl spacer largely inhibited both the DHA-to-VHF photoisomerizations and the thermal VHF-to-DHA back-reactions; the latter occurred ten times slower than for the related compound with a meta-phenylene spacer. A DHA trimer containing three DHA units around a central benzene ring was found to undergo stepwise DHA-to-VHF photoisomerizations, whereas the thermal back-reactions occurred at similar rates for the three VHF entities. A meta-phenylene-bridged DHA dimer was subjected to further structural modifications at position C-1 of each DHA, having strong implications for the switching events, and synthetic steps for further functionalizations at position C-7 of each DHA were investigated. Finally, the molecular structure (from X-ray crystallographic analysis) between the meta-phenylene-bridged DHA dimer and Cu is presented.
多光子体系,其中包含可单独寻址的开关单元,对于开发先进的数据存储设备具有吸引力。在这里,我们介绍了一系列这样的分子体系的合成和性质,其中包含二氢吖啶/乙烯庚富烯(DHA/VHF)光/热开关。研究了将两个 DHA 单元隔开的连接体(间苯二酚与吖啶-1,3-二基与噻吩-2,5-二基)对开关性能的影响。吖啶-1,3-二基间隔基在很大程度上抑制了 DHA 到 VHF 的光异构化和热 VHF 到 DHA 的逆反应;后者的反应速度比具有间苯二酚间隔基的相关化合物慢十倍。含有三个 DHA 单元围绕一个中央苯环的 DHA 三聚体被发现经历逐步的 DHA 到 VHF 的光异构化,而三个 VHF 实体的热逆反应以相似的速率发生。间苯二酚桥联的 DHA 二聚体在每个 DHA 的 C-1 位置进行了进一步的结构修饰,这对开关事件有很强的影响,并研究了每个 DHA 的 C-7 位置的进一步功能化的合成步骤。最后,提出了间苯二酚桥联的 DHA 二聚体与 Cu 之间的分子结构(来自 X 射线晶体学分析)。