Science. 1991 Apr 5;252(5002):103-6. doi: 10.1126/science.252.5002.103.
A two-state, four-orbital, independent electron analysis of the first optical molecular hyperpolarizability, beta, leads to the prediction that |beta| maximizes at a combination of donor and acceptor strengths for a given conjugated bridge. Molecular design strategies that focus on the energetic manipulations of the bridge states are proposed for the optimization of beta. The limitations of molecular classes based on common bridge structures are highlighted and more promising candidates are described. Experimental results supporting the validity of this approach are presented.
采用二态四轨道独立电子分析方法对第一光分子超极化率β进行了分析,预测出在给定的共轭桥中,给体和受体的强度组合将使|β|最大化。为了优化β,提出了专注于桥状态能量操纵的分子设计策略。突出了基于常见桥结构的分子类型的局限性,并描述了更有前途的候选物。提出了支持该方法有效性的实验结果。