首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Nonlinear optical properties for a class of hexa-peri-hexabenzocoronene chromophores: A computational investigation
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Nonlinear optical properties for a class of hexa-peri-hexabenzocoronene chromophores: A computational investigation

机译:一类六​​-peri-hexabenzocoronene生色团的非线性光学性质:计算研究

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摘要

The systematic investigation of the linear and nonlinear optical properties on such a class of hexa-peri-hexabenzocoronene (HBC) chromophores is of significance for rationally designing two-photon absorption (TPA) materials. The results indicate that increasing the strength of electron-donating or accepting terminal groups leads to bathochromic-shift of the absorption band and enhancement of the TPA cross section (δ _(max)). For the molecules with fluorinated methylene and cyano substituents, replacement of a double bond by a triple bond in the conjugated linker produces the increase of δ _(max), owing to the lower bond-length alternation and better rigidity of phenylene-ethynylene. In contrast, for the molecules with nitro groups, the similar replacement results in a slight decrease of δ _(max) because N-HBC-E-NO2 has excellent planarity architecture and effective electronic coupling. The TPA spectra are red-shifted and the δ _(max) values are enhanced as the number of branches increases. Thus, a solvatochromism effect has a positive influence on the TPA response of the nitryl compounds due to larger polarization of the nitro moiety. We have shed light on the linear relationship between the first hyperpolarizability and δ _(max). These HBC derivatives hold potential as high-performance nonlinear optical materials.
机译:对这类六-六-六苯并二苯并呋喃(HBC)生色团进行线性和非线性光学性质的系统研究对于合理设计双光子吸收(TPA)材料具有重要意义。结果表明,增加电子给体或接受端基的强度会导致吸收带的红移和TPA截面(δ_(max))的增加。对于具有氟化的亚甲基和氰基取代基的分子,由于亚苯基-亚乙炔基的键长交替较小且具有更好的刚性,因此共轭接头中的三键取代双键会导致δ_(max)的增加。相反,对于具有硝基的分子,类似的置换导致δ_(max)略有下降,因为N-HBC-E-NO2具有出色的平面性结构和有效的电子耦合。随着分支数的增加,TPA光谱会发生红移,并且δ_(max)值会增加。因此,由于硝基部分的较大极化,溶剂致变色效应对腈化合物的TPA响应具有积极影响。我们已经阐明了第一超极化率和δ_(max)之间的线性关系。这些HBC衍生物具有作为高性能非线性光学材料的潜力。

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