首页> 外文期刊>The Journal of Organic Chemistry >Synthesis of D-A-A and D-A-D Pyrimidine pi-Systems Using Triorganoindium Reagents: Optical, Vibrational, and Electrochemical Studies
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Synthesis of D-A-A and D-A-D Pyrimidine pi-Systems Using Triorganoindium Reagents: Optical, Vibrational, and Electrochemical Studies

机译:使用TrirogroneNium Reagents的D-A-A和D-A-D-A-D嘧啶PI-Systems的合成:光学,振动和电化学研究

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摘要

A series of donor acceptor acceptor (D-A-A) and donor-acceptor-donor (D-A-D) systems based on a pyrimidine pi-spacer with various substituents at the C-2 position has been successfully prepared. The synthesis involved site-selective palladium cross-coupling reactions of chloropyrimidines with triorganoindium reagents and proceed in good yields and with atom economy. 4-(N,N-Diphenylamino)phenyl was chosen as the donor group and thien-2-yl dicyanovinylene as the acceptor one. The optical, vibrational, electrochemical, and density functional theory (DFT) calculations of these molecular systems were analyzed, and experimental values show the important role of the substituents at the C-2 position of the pyrimidine with substituents at the C-2 position of the pyrimidine with stronger electron accepting ability, absorption in a wide range of UV/vis, acceptable fluorescence lifetime, and effective intramolecular charge transfer (ICT) properties. The ICT was observed in both series by the bathochromic shift on increasing the polarity of the solvent. In addition, DFT calculations found lower lowest unoccupied molecular orbitals of D-A-A molecules that suggest good electron ejection and transportation, being good properties for their application in various organic optoelectronic devices.
机译:已经成功地制备了一系列基于嘧啶Pi-Spacer的供体受体(D-A-A)和供体 - 受体(D-A-D)系统,并成功地制备了C-2位的各种取代基。合成涉及氯嘧啶与三元油吲哚试剂的位点选择性钯交联反应,并以良好的产率和原子经济进行。选择4-(N,N-二苯基氨基)作为供体基团和噻吩-2-基二氰基聚丙烯作为受体的苯基。分析了这些分子系统的光学,振动,电化学和密度泛函理论(DFT)计算,实验值表明取代基在嘧啶的C-2位位置的重要作用与C-2位置的取代基嘧啶具有较强的电子接受能力,在宽范围的UV / Vis,可接受的荧光寿命和有效的分子内电荷转移(ICT)性质中吸收。通过碱性转变在增加溶剂的极性方面,两种串联观察到ICT。此外,DFT计算发现D-A-A分子的最低未占用的分子轨道,该分子提出了良好的电子喷射和运输,是它们在各种有机光电器件中应用的良好性质。

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