Cole Jacqueline M
Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, UK.
Philos Trans A Math Phys Eng Sci. 2003 Dec 15;361(1813):2751-70. doi: 10.1098/rsta.2003.1271.
The relationships between molecular structure and the nonlinear optical phenomenon second-harmonic generation (SHG) are discussed. New-found relationships built up from basic structural axioms that were deduced in the 1970s and 1980s are the particular focus of this article, using structural results from X-ray and neutron-diffraction studies. The molecular and supramolecular manifestations of the SHG effect are borne out, although ways to optimize the effect on the molecular scale feature predominantly, since control of SHG on the supramolecular scale remains difficult given present limitations. The use of a variety of templates to generate head-to-tail oriented host-guest species thereby bypassing such limitations is described. The paper concludes with a look ahead at next generation 'octupolar' SHG-active compounds, the prediction of new series of SHG-active compounds via data-mining computational procedures, and developments in diffraction technology that may enable structural movies of a molecule to be captured during the SHG process. A practical assessment of the viability of organic SHG materials for industrial application is reviewed with a positive outcome, thus indicating a promising future for organic SHG materials.
本文讨论了分子结构与非线性光学现象二次谐波产生(SHG)之间的关系。本文特别关注基于20世纪70年代和80年代推导的基本结构公理建立的新发现关系,并采用了X射线和中子衍射研究的结构结果。虽然SHG效应在分子尺度上优化效应的方法占主导地位,但SHG效应的分子和超分子表现得到了证实,因为鉴于目前的限制,在超分子尺度上控制SHG仍然很困难。本文描述了使用各种模板生成头对尾取向的主客体物种从而绕过此类限制的方法。本文最后展望了下一代“八极”SHG活性化合物,通过数据挖掘计算程序预测新的SHG活性化合物系列,以及衍射技术的发展,这些技术可能使在SHG过程中捕获分子的结构动态影像成为可能。本文对有机SHG材料用于工业应用的可行性进行了实际评估,结果是积极的,从而表明有机SHG材料前景广阔。