首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Structural, electronic, and optical properties of novel indolocarbazole-based conjugated derivatives
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Structural, electronic, and optical properties of novel indolocarbazole-based conjugated derivatives

机译:新型基于吲哚并咔唑的共轭衍生物的结构,电子和光学性质

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A study of the structure, electronic, and optical properties of new indolo[3,2-b]carbazoles is reported. Geometry optimizations of the ground state of the derivatives were carried out using the density functional theory (DFT) with the B3LYP functional and the 6-31G* basis set. Molecules disubstituted with phenyl or thiophene units at molecular ends were found nonplanar in their electronic ground states (S_0), whereas indolocarbazoles having phenylenevinylenes at molecular ends are nearly planar. The electronic excitation transitions of the indolocarbazoles were investigated using the time-dependent (TD) DFT method performed on the ground state optimized geometries. For all the derivatives, excitation to the S_1 state corresponds mainly to LUMO←HOMO transition, whereas the second electronic transition mainly originates from the LUMO←HOMO-1 excitation. The excitation energies are found in fair agreement with the absorption energies of the indolocarbazoles. The optimization (relaxation) of the first singlet excited electronic state (S_1) has been done using the restricted configuration interaction (singles) (RCIS/6-31G*) approach. The electronically excited geometries favor a more quinoidic type structure. Emission energies have been obtained from TDDFT calculations performed on the S_1 optimized geometries and are in fair agreement with experimental data obtained from fluorescence spectra. The change from phenyl to thiophene rings as well as the incorporation of vinyl units between the phenyl and the indocarbazole moieties induce a significant decrease in the excitation and emission energies.
机译:报道了新型吲哚[3,2-b]咔唑的结构,电子和光学性质的研究。使用密度泛函理论(DFT),B3LYP泛函和6-31G *基集对衍生物基态进行几何优化。发现在分子末端被苯基或噻吩单元二取代的分子在其电子基态(S_0)中是非平面的,而在分子末端具有亚苯基亚乙烯基的吲哚并咔唑几乎是平面的。吲哚并咔唑的电子激发跃迁是使用时基(TD)DFT方法对基态优化的几何构型进行研究的。对于所有导数,激发到S_1状态主要对应于LUMO←HOMO跃迁,而第二电子跃迁主要源自LUMO←HOMO-1激发。发现激发能与吲哚并咔唑的吸收能完全一致。第一单重态激发电子态(S_1)的优化(松弛)已使用受限配置交互(单)(RCIS / 6-31G *)方法完成。电子激发的几何形状有利于更quinoidic型的结构。发射能量已经从在S_1优化的几何结构上进行的TDDFT计算获得,并且与从荧光光谱获得的实验数据完全吻合。从苯基到噻吩环的变化以及在苯基和吲哚并咔唑基团之间引入乙烯基单元会引起激发和发射能的显着降低。

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