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超快水溶性光致变色光酸的实验与理论表征

Experimental and Theoretical Characterization of Ultrafast Water-Soluble Photochromic Photoacids.

作者信息

Aldaz Cody R, Wiley Theodore E, Miller Nicholas A, Abeyrathna Nawodi, Liao Yi, Zimmerman Paul M, Sension Roseanne J

机构信息

Department of Chemistry, University of Michigan, 930 North University Avenue Ann Arbor, Michigan 48109-1055, United States.

Department of Chemistry, Florida Institute of Technology Melbourne, Florida 32901-8636, United States.

出版信息

J Phys Chem B. 2021 Apr 29;125(16):4120-4131. doi: 10.1021/acs.jpcb.1c00644. Epub 2021 Apr 19.

Abstract

UV-visible transient absorption spectroscopy and quantum mechanical simulations are combined to elucidate the photochemical mechanism of two metastable merocyanine/spiropyran photoacids, 2-[()-2-(2-hydroxyphenyl)ethenyl]-3,3-dimethyl-1-(3-sulfopropyl)-3-indol-1-ium (phenylhydroxy-MCH) and 2-[()-2-(1-indazol-7-yl)ethenyl]-3-(3-sulfopropyl)-1,3-benzothiazol-3-ium (indazole-MCH). Transient absorption spectra demonstrate that -acid isomerization to the form results in deprotonation on a picosecond time scale. Ring closure to form spiropyran follows promptly from the appropriate conformation or follows at longer time delays (≫3.5 ns) following a barrier crossing for single-bond isomerization to the appropriate conformation. Consistent with the results of Berton et al. [ 2020, 11, 8457-8468] , we find that -phenylhydroxy-MCH is a stronger acid than -phenylhydroxy-MCH. The decrease in p upon isomerization is further investigated to benchmark quantum chemical methods for their accuracy. Calculations were performed with nine levels of theory including continuum solvent models and explicit water. The calculations are not sufficient to describe the Δp following isomerization of these photoacids, and more work is necessary to properly evaluate the physical basis for the acidity of the photoacids.

摘要

紫外可见瞬态吸收光谱法与量子力学模拟相结合,以阐明两种亚稳态部花青/螺吡喃光酸,即2 - [()-2 - (2 - 羟基苯基)乙烯基] - 3,3 - 二甲基 - 1 - (3 - 磺丙基) - 3 - 吲哚 - 1 - 鎓(苯基羟基 - MCH)和2 - [()-2 - (1 - 吲唑 - 7 - 基)乙烯基] - 3 - (3 - 磺丙基) - 1,3 - 苯并噻唑 - 3 - 鎓(吲唑 - MCH)的光化学机理。瞬态吸收光谱表明,-酸异构化为形式会在皮秒时间尺度上导致去质子化。从适当的构象迅速发生闭环形成螺吡喃,或者在单键异构化为适当构象越过势垒后在更长的时间延迟(≫3.5纳秒)之后发生。与Berton等人[2020, 11, 8457 - 8468]的结果一致,我们发现 - 苯基羟基 - MCH比 - 苯基羟基 - MCH是更强的酸。进一步研究异构化时p的降低,以评估量子化学方法的准确性。使用包括连续介质溶剂模型和显式水的九种理论水平进行计算。这些计算不足以描述这些光酸异构化后的Δp,需要更多的工作来正确评估光酸酸度的物理基础。

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