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作为二阶非线性光学分子开关的部花青-螺吡喃化合物的计算机模拟优化

In silico optimization of merocyanine-spiropyran compounds as second-order nonlinear optical molecular switches.

作者信息

Plaquet Aurélie, Guillaume Maxime, Champagne Benoît, Castet Frédéric, Ducasse Laurent, Pozzo Jean-Luc, Rodriguez Vincent

机构信息

Laboratoire de Chimie Théorique Appliquée, Facultés Universitaires Notre-Dame de la Paix, rue de Bruxelles 61, Namur, Belgium.

出版信息

Phys Chem Chem Phys. 2008 Nov 7;10(41):6223-32. doi: 10.1039/b806561f. Epub 2008 Sep 3.

Abstract

Time-dependent Hartree-Fock and Møller-Plesset second-order calculations have been used to unravel the relationships between structure and first hyperpolarizability in spiropyran/merocyanine couples and therefore to design efficient second-order nonlinear optical switching compounds. Large first hyperpolarizabilities for the merocyanine form as well as large contrasts of first hyperpolarizability have been obtained when, on the same species, (i) substituents at R(1) and R(2) positions on the phenolate ring of the merocyanine form are strong acceptor and donor substituents, respectively, (ii) the ethylenic bridge is substituted by donor groups, (iii) the other aromatic part of the system is benzimidazolo rather than indolino or benzothiazolo, and (iv) strong donor substituents are placed on the benzimidazolo moiety.

摘要

含时 Hartree-Fock 和 Møller-Plesset 二阶计算已被用于揭示螺吡喃/部花青对中结构与第一超极化率之间的关系,从而设计高效的二阶非线性光学开关化合物。当在同一物种上满足以下条件时,已获得部花青形式的大第一超极化率以及第一超极化率的大对比度:(i) 部花青形式的酚盐环上 R(1) 和 R(2) 位置的取代基分别为强受体和供体取代基;(ii) 烯桥被供体基团取代;(iii) 体系的另一个芳香部分是苯并咪唑并而非吲哚并或苯并噻唑并;(iv) 强供体取代基位于苯并咪唑并部分。

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