首页> 外文期刊>International Journal of Photoenergy >A New Approach for Studying Bond Rupture/Closure of a Spiro Benzopyran Photochromic Material: Reactivity Descriptors Derived from Frontier Orbitals and DFT Computed Electrostatic Potential Energy Surface Maps
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A New Approach for Studying Bond Rupture/Closure of a Spiro Benzopyran Photochromic Material: Reactivity Descriptors Derived from Frontier Orbitals and DFT Computed Electrostatic Potential Energy Surface Maps

机译:一种新方法,用于研究螺旋苯吡喃光致变色材料的债券破裂/关闭:从前沿轨道和DFT计算的静电潜在能量表面图的反应性描述符

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This paper focuses on computations technique within the framework of the TD-DFT theory for studying the relationship between structure-properties of reversible conversion of photochromic materials. Specifically, we report on 1',3'-dihydro-8-methoxy-1',3',3'-trimethyl-6-nitrospiro[2H-1-benzopyran-2,2'-(2H)-indole] (SP) and its isomers. TD-DFT calculated UV-Vis electronic spectra of the closed and open isomers of this photochromic material are in excellent agreement with the experimental results. Moreover, this paper reports on the results of theoretical investigations of reactivity indices that may govern the conversion between spiropyrans and its isomers. In addition, the solvent and rigidity of the medium significantly control the thermal bleaching of the photogenerated colored isomers and hence the switch ability pattern of the photochromic material. The effect of molecular structure computed by DFT in gas-phase and solvents on C-spiro-O bond length has been shown to correlate with photochromic properties. For this compound, DFT optimized geometry could be used to predict photochromism. Furthermore, in an attempt to predict the driving force for MC -> SP, this work explores, for the first time, profitable exploitation of the calculated and visualized mapped electrostatic potential energy surfaces (ESP map). Interestingly, it seems that the electrostatic potential forces over the molecular fragments govern spirobond rupture/closure reactions. Thermodynamically, all-trans-colored isomer (CTT) is the most stable merocyanine-like form.
机译:本文侧重于TD-DFT理论框架内的计算技术,用于研究光致变色材料可逆转换的结构性能之间的关系。具体而言,我们报告1',3'-二氢-8-甲氧基-1',3',3'-三甲基-6-氮杂物[2H-1-苯并吡喃-2,2' - (2H) - 吲哚]( sp)及其异构体。 TD-DFT计算出这种光致变色材料的封闭和开放异构体的UV-Vis电子光谱与实验结果非常好。此外,本文报告了反应性指数的理论调查结果,可以控制螺吡喃和其异构体之间的转化。此外,培养基的溶剂和刚性显着控制光生异构体的热漂白,从而控制光致变色材料的开关能力图案。已经显示通过DFT计算的分子结构的效果和C-SPIRO-O键长度上的溶剂溶剂与光致变色特性相关。对于该化合物,DFT优化的几何形状可用于预测光学变色。此外,为了预测MC - > SP的驱动力,这项工作首次探讨了计算的和可视化型型型静电势能表面(ESP地图)的盈利开发。有趣的是,似乎分子片段上的静电势力治理螺螺皮破裂/闭合反应。热力学上,全型染色体异构体(CTT)是最稳定的单氰胺状形式。

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