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手性富勒烯 C60 衍生物的圆二色性光学性质的理论研究。

Theoretical study on the chiroptical optical properties of chiral fullerene C60 derivative.

机构信息

Institute of Functional Material Chemistry, Faculty of Chemistry, Northeast Normal University, Changchun, Jilin, China.

出版信息

J Phys Chem A. 2011 Nov 24;115(46):13356-63. doi: 10.1021/jp204860x. Epub 2011 Nov 2.

Abstract

Time-dependent density functional theory (TDDFT) calculations have been used to investigate UV/CD spectra and nonlinear optical (NLO) property of the C(60)-fullerene bisadduct (R,R,(f,s)A)-[CD(+)280] for the first time. The electron transition natures of the four main measured bands are analyzed, and their results are used to designate the excited states involved in an electron-transfer process of the studied compound. On a comparative scale, the predicted excitation energies and oscillator strengths are in reasonable agreement with the observed values, demonstrating the efficiency of TDDFT in predicting the localized and charge transfer transitions. The good agreement between the experimental and the simulated CD spectra shows that TDDFT calculations can be used to assign the absolute configurations (ACs) of chiral fullerene C(60) derivatives with high confidence. The observed large dissymmetry ratio g (g = Δε/ε) at about 700 nm results from the orbital characters of the local fullerene excited state, which leads to large transition magnetic dipole moment and small transition electronic dipole moment. The different functionals and solvent effects on UV/CD spectra were also considered. The studied compound has a possibility to be an excellent second-order NLO material from the standpoint of transparency and large second-order polarizability value.

摘要

时间依赖密度泛函理论(TDDFT)计算首次被用于研究 C(60)-富勒烯双加成物(R,R,(f,s)A)-[CD(+)280] 的紫外/圆二色(CD)光谱和非线性光学(NLO)性质。分析了四个主要测量波段的电子跃迁性质,并将其结果用于指定研究化合物中电子转移过程涉及的激发态。在比较尺度上,预测的激发能和振子强度与观察值吻合较好,证明了 TDDFT 在预测局域和电荷转移跃迁方面的效率。实验和模拟 CD 光谱之间的良好一致性表明,TDDFT 计算可用于高度置信地分配手性富勒烯 C(60)衍生物的绝对构型(ACs)。在大约 700nm 处观察到的大不对称比 g(g=Δε/ε)来自局部富勒烯激发态的轨道性质,这导致了大的跃迁磁偶极矩和小的跃迁电偶极矩。还考虑了不同的功能和溶剂对 UV/CD 光谱的影响。从透明度和大二阶极化率值的角度来看,研究的化合物有可能成为一种优秀的二阶 NLO 材料。

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