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含修饰茚满酮基团的模型推拉型多烯的电子结构与非线性光学性质:一项理论研究

Electronic structure and nonlinear optical properties of model push-pull polyenes with modified indanone groups: a theoretical investigation.

作者信息

Szymusiak H, Zielinski R, Domagalska BW, Wilk KA

机构信息

Department of Technology and Environmental Protection, Poznan University of Economics, Poland.

出版信息

Comput Chem. 2000 May;24(3-4):369-80. doi: 10.1016/s0097-8485(99)00082-0.

DOI:10.1016/s0097-8485(99)00082-0
PMID:10816007
Abstract

Several model polyenes with modified indanone groups were studied by means of density functional theory (DFT) B3LYP/6-31G*, ab initio HF/3-21G* and semiempirical AM1 methods. We investigated the effect of several substituents upon the relationship between the structure, spatial distribution of the highest occupied and the lowest unoccupied pi-MOs, a concept of the global softness and the global hardness as well as both linear and nonlinear polarizabilities for the set of pi-electron chromophores represented by the short-chain model polyene (butadiene) carrying out p-methoxyphenyl group on the one end and several modified indanone groups on the opposite end of the molecule. As probing endocyclic groups used to modify the structure of indanone the following substituents: > CH2; > C=O; > SO2, > C=CH(NO2) and > C=C(CN)2 were selected. The cubic relationship between the polarizability and the global softness was found. The highest polarizabilities (alpha, beta, gamma) are predicted for the derivatives with > C=C(CN)2 group. It was found that the value of beta depends mainly on the difference between dipole moments in the excited and ground states of the molecules. In the case of > SO2 group the results of AMI calculations significantly deviate from relationships found for other derivatives. Experimental IR and Raman spectra of newly synthesized indandione derivative of cinnamaldehyde were compared with computed ones.

摘要

通过密度泛函理论(DFT)B3LYP/6 - 31G*、从头算HF/3 - 21G*和半经验AM1方法研究了几种带有修饰茚满酮基团的模型多烯。我们研究了几种取代基对结构、最高占据π分子轨道和最低未占据π分子轨道的空间分布、全局软度和全局硬度概念以及由短链模型多烯(丁二烯)代表的π电子发色团集合的线性和非线性极化率之间关系的影响,该短链模型多烯一端带有对甲氧基苯基,另一端带有几种修饰的茚满酮基团。作为用于修饰茚满酮结构的探测内环基团,选择了以下取代基:>CH2;>C=O;>SO2、>C=CH(NO2) 和 >C=C(CN)2。发现极化率与全局软度之间存在立方关系。预测带有>C=C(CN)2基团的衍生物具有最高的极化率(α、β、γ)。发现β值主要取决于分子激发态和基态偶极矩之间的差异。在>SO2基团的情况下,AMI计算结果与其他衍生物的关系显著不同。将新合成的肉桂醛茚二酮衍生物的实验红外光谱和拉曼光谱与计算光谱进行了比较。

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