Grupo de Química-Física Teórica, Instituto de Química, Universidad de Antioquia, AA 1226 Medellín, Colombia.
J Phys Chem A. 2010 Oct 21;114(41):10917-21. doi: 10.1021/jp1077642.
We present a study of the electronic structure and derived properties of polyfurane (PFu), polypyrrol (PPy), and polythiophene (PTh). Two spatial arrangements are considered: trans chain (tc-PFu, tc-PPy, tc-PTh) and cis α-helical (α-PFu, α-PPy, α-PTh). Even at the small sizes considered here, helical conformations appear to be stable. Band gaps of pure, undoped oligomers fall into the semiconductor range. Density of states (DOS) analysis suggest dense valence and conduction bands. Bond length alternation analysis predicts almost complete delocalization of the π clouds in all spatial arrangements. Doping with electron donors or electron-withdrawing impurities reduces all band gaps close to the metallic regime in addition to increasing the DOS for the valence and conduction bands.
我们研究了聚呋喃(PFu)、聚吡咯(PPy)和聚噻吩(PTh)的电子结构和衍生性质。考虑了两种空间排列方式:反式链(tc-PFu、tc-PPy、tc-PTh)和顺式α-螺旋(α-PFu、α-PPy、α-PTh)。即使在考虑的小尺寸下,螺旋构象似乎也是稳定的。纯、未掺杂的低聚物的能带隙落入半导体范围。态密度(DOS)分析表明价带和导带密度很高。键长交替分析预测所有空间排列的π云几乎完全离域。用电子给体或电子受主掺杂除了增加价带和导带的 DOS 外,还会将所有带隙降低到接近金属状态。