首页> 外文期刊>The Journal of Chemical Physics >Combined molecular and supramolecular bottom-up nanoengineering for enhanced nonlinear optical response:Experiments,modeling,and approaching the fundamental limit
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Combined molecular and supramolecular bottom-up nanoengineering for enhanced nonlinear optical response:Experiments,modeling,and approaching the fundamental limit

机译:结合分子和超分子自下而上的纳米工程技术,以增强非线性光学响应:实验,建模和接近基本极限

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摘要

The authors study the combination of two independent strategies that enhance the hyperpolarizability of ionic organic chromophores.The first molecular-level strategy is the extension of the conjugation path in the active chromophore.The second supramolecular-level strategy is the bottom-up nanoengineering of an inclusion complex of the chromophore in an amylose helix by self-assembly.The authors study a series of five(dimethylamino)stilbazolium-type chromophores with increasing conjugation length between the(dimethylamino)phenyl donor ring and the pyridinium acceptor ring in conjunction with four amylose helices of differing molecular weights.The first hyperpolarizabilities of the self-assembled inclusion complexes,as determined with frequency-resolved femtosecond hyper-Rayleigh scattering at 800 and 1300 nm,are compared with experimental values for the free chromophores in solution and with theoretical values.While the experimental values for the hyperpolarizability in solution are lower than the theoretically predicted values,an enhancement upon inclusion is observed,with the longest chromophore in the best amylose helix showing an enhancement by one order of magnitude.Molecular modeling of the inclusion of the chromophore suggests that the coplanarity of the two rings is more important than all-trans configuration in the conjugation path.The fundamental limit analysis indicates that the inclusion inside the amylose helix results in an optimal excited-level energy spacing that is responsible for breaching the apparent limit.
机译:作者研究了两种增强离子有机发色团超极化性的独立策略的组合。第一个分子级策略是扩展活性发色团的共轭路径,第二个超分子级策略是从头到下的纳米工程。通过自组装将生色团包埋在直链淀粉螺旋中。将频率和频率分别在800和1300 nm的飞秒超瑞利散射测定的自组装包合物的第一超极化率与溶液中游离发色团的实验值和理论值进行比较。虽然溶液中超极化率的实验值较低小于理论预测值时,观察到夹杂物增强,在最佳直链淀粉螺旋中最长的发色团显示出一个数量级的增强。对发色团包含物的分子模型表明,两个环的共面性更大基本的极限分析表明,直链淀粉螺旋结构中的夹杂物导致最佳的激发能级能级间距,该能级间距是违反表观极限的原因。

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