Wampler Ronald D, Moad Andrew J, Moad Charles W, Heiland Randy, Simpson Garth J
Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, USA.
Acc Chem Res. 2007 Oct;40(10):953-60. doi: 10.1021/ar600055t. Epub 2007 Aug 23.
The emergence of nonlinear optical (NLO) measurement approaches has provided new windows into molecular and macromolecular structure within thin films and materials. The greatest barriers in mining this structural information increasingly appear in meaningfully relating these macroscopic results back to molecular-level descriptions, driven largely by the increasing complexity of the molecular systems and interfacial architectures under interrogation. As NLO methods continue their expansion into increasingly diverse disciplines, so grows the need for tools to guide this evolution without sacrificing the mathematical rigor of more traditional tensor representations. Recent developments reviewed in this Account are designed to facilitate interpretation of complex assemblies using relatively simple but still quantitatively accurate visual representations of the polarization-dependent optical nonlinearity, both for individual chromophores and for polymeric assemblies of coupled chromophores. Although the primary focus of this Account is on second-order nonlinear optical effects, including second harmonic generation and sum frequency generation, many of these same concepts also directly apply to higher-order phenomena.
非线性光学(NLO)测量方法的出现为研究薄膜和材料中的分子及大分子结构提供了新的视角。在挖掘这些结构信息时,最大的障碍越来越多地体现在如何将这些宏观结果有意义地与分子水平的描述联系起来,这在很大程度上是由于所研究的分子系统和界面结构日益复杂。随着NLO方法不断扩展到越来越多不同的学科领域,对于在不牺牲更传统张量表示的数学严谨性的情况下指导这一发展的工具的需求也在增加。本综述文章中回顾的最新进展旨在利用相对简单但仍定量准确的依赖偏振的光学非线性视觉表示,促进对复杂组装体的解释,这些组装体既包括单个发色团,也包括耦合发色团的聚合物组装体。尽管本综述文章的主要重点是二阶非线性光学效应,包括二次谐波产生和和频产生,但许多相同的概念也直接适用于高阶现象。