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Two-photon singlet oxygen sensitizers:quantifying,modeling,and optimizing the two-photon absorption cross section

机译:双光子单线态氧敏剂:量化,建模和优化双光子吸收截面

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Several substituted difuranonaphthalenes have been identified as being viable sensitizers for the production of single molecular oxygen (a~1 triangle open_g)upon two-photon nonlinear excitation with a focused laser beam.The two-photon absorption cross sections of these molecules are comparatively large and depend significantly on the functional groups attached to the chromophore.The facilitate the further development of such sensitizers,computational tools have been employed to model the two-photon absorption cross sections of some difuranonaphthalenes as well as distyryl benzenes that likewise can be viable single oxygen precursors.Ab initio calculations using response theory yield cross sections that reproduce experimental data well.Specifically,for these comparatively large molecules,the calculations not only model relative substituent-dependent changes well but also yield reasonably accurate cross asctions.Thus,ab initio computational methods can indeed the used as a predictive toole in the design of potentially useful,two-photon singlet oxygen sensitizers.
机译:几种取代的二呋喃萘已被证实是可行的敏化剂,用于在聚焦激光束的双光子非线性激发下产生单分子氧(a〜1三角open_g),这些分子的双光子吸收截面较大,并且为了促进此类敏化剂的进一步开发,已使用计算工具对某些二呋喃萘以及二苯乙烯基苯的双光子吸收截面进行建模,它们也可能是可行的单氧前体使用响应理论进行从头算的计算得出可以很好地再现实验数据的横截面。特别是,对于这些比较大的分子,该计算不仅可以很好地模拟相对于取代基的变化,而且还可以产生相当准确的横截面。因此,从头计算方法可以确实也被用作预测设计潜在有用的双光子单线态氧敏化剂。

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