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A Solution- and Solid-State Investigation of Medium Effects on Charge Separation in Metastable Photomerocyanines

机译:溶液和固态研究介电作用对亚稳态光金属花青素电荷分离的影响

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摘要

The effects of solution-state dielectric and intermolecular interactions on the degree of charge separation in metastable spirooxazine photomerocyanines (PMCs) is investigated. We report the first X-ray diffraction (XRD) analyses of an open form, a metastable photomerocyanine, of the spirooxazine class of photochromic molecules in two derivatives: spiro[azahomoadamantane-isoquinolinoxazine] (1) and spiro[azahomoadamantane-phenanthrolinoxazine] (2). Using the results of XRD analysis of the open photomerocyanine forms, in conjunction with computation, solvatochromism, and solution NMR studies, we have investigated the effect of the medium on the ground-state structure of these photomerocyanines. Solvatochromism and NMR chemical shift studies of 1 and 2 support the assignment of a quinoidal structure in nonpolar solvents and a zwitterionic structure in high-polarity solvents. The effect of azahomoadamantyl substitution is explored by comparing 1 and 2 with the analogous indolyl derivatives, spiro[indoline-isoquinolinoxazine] (3) and spiro[indoline-phenanthrolinoxazine] (4) through XRD analysis of the closed spirooxazine (SO) forms, solution-state kinetic experiments, solvatochromism, and NMR studies. Longer Cspiro−O bond lengths in the SO form and slower rates of thermal PMC → SO isomerization for the azahomoadamantyl derivatives are associated with greater zwitterionic character in the PMC form, as found in the solvatochromism studies. XRD analysis of photomerocyanines 1 and 2 indicate a greater contribution from the canonical zwitterionic resonance form relative to the quinoidal form in the solid state. Structural differences observed in two pseudopolymorphs of 2-PMC suggest that the degree of charge-separated character is influenced by the crystal packing environment. These results provide direct structural evidence for the effects of the medium polarity on charge-separated states of photomerocyanines.
机译:研究了溶液状态介电和分子间相互作用对亚稳态螺恶嗪光硫氰酸盐(PMCs)中电荷分离程度的影响。我们报告了两种衍生物的螺环恶嗪类光致变色分子的开环形式,亚稳态的光致花青素的首次X射线衍射(XRD)分析:螺环[azahomoadamantane-异喹啉恶嗪](1)和螺环[azahomoadamantane-phenanthrolinoxazine](2 )。使用XRD分析结果的开放式光金属花青形式,结合计算,溶剂变色和溶液NMR研究,我们研究了介质对这些光金属花青的基态结构的影响。 1和2的溶剂变色和NMR化学位移研究支持在非极性溶剂中分配喹啉结构,在高极性溶剂中分配两性离子结构。通过将封闭的螺恶嗪(SO)形式,溶液的XRD分析,将1和2与类似的吲哚基衍生物螺[吲哚啉-异喹啉恶嗪](3)和螺[吲哚啉-菲咯啉恶嗪](4)进行比较,探讨了氮杂金刚烷取代的作用。态动力学实验,溶剂变色和NMR研究。如在溶剂变色研究中发现的那样,SO形式的C spiro -O键长度较长和热PMC→SO异构的氮杂金刚烷衍生物的异构化与PMC形式的两性离子性状较大有关。对光金属花青1和2的XRD分析表明,相对于固态的醌型,规范的两性离子共振形式贡献更大。在2-PMC的两个假多晶型物中观察到的结构差异表明,电荷分离特征的程度受晶体堆积环境的影响。这些结果提供了直接的结构证据,表明介质极性对光merocyanines的电荷分离状态有影响。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2010年第36期|p.12568-12586|共19页
  • 作者

    Dinesh G. Patelrs;

  • 作者单位

    Department of Chemistry, University of Washington, P.O. Box 351700, Seattle, Washington 98195, Department of Chemistry, University of Victoria, P.O. Box 3065, Victoria, BC V8W 3V6, Canada, and Department of Chemistry, University of Alberta, Edmonton, AB T;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 00:50:21

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