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Theoretical study of optoelectronic and thermodynamic properties of molecule 4-[2-(2-N,N-dihydroxy amino thiophene)vinyl]benzanamine: Influence of hydroxyl position

机译:4- [2-(2-N,N-二羟基氨基噻吩)乙烯基]苯氮胺分子的光电和热力学性质的理论研究:羟基位置的影响

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In this work we have theoretically determined the optoelectronic and thermodynamic properties of the donor-acceptor molecule 4-[2-(2-N, N-dihydroxy amino thiophene)vinyl] benzanamine and study the influence of the position of the hydroxyl group on some of the optoelectronic properties. The results obtained from the B3LYP, B3PW91 and RHF methods by employing the 6-311++G** basis set show that 4-[2-(2-N, N-dihydroxy amino thiophene)vinyl] benzanamine and N, N-dihydroxy-4[2-(2-amino thiophene) vinyl] benzanamine are semiconductor materials with good optoelectronic properties and may have applications in thin films, photonics, electronics, optoelectronics, etc. We also observed that the position of the hydroxyl group in the molecules influences their optoelectronic and thermodynamic properties. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们从理论上确定了供体-受体分子4- [2-(2-N,N-二羟基氨基噻吩)乙烯基]苯并胺的光电和热力学性质,并研究了羟基位置对某些化合物的影响。的光电特性。使用6-311 ++ G **基集从B3LYP,B3PW91和RHF方法获得的结果表明,4- [2-(2-N,N-二羟基氨基噻吩)乙烯基]苯氮胺和N,N-二羟基-4 [2-(2-氨基噻吩)乙烯基]苯并胺是具有良好光电性能的半导体材料,可能在薄膜,光子学,电子学,光电学等领域得到应用。我们还观察到羟基在分子影响其光电和热力学性质。 (C)2017 Elsevier B.V.保留所有权利。

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