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Electrochemical and Spectroelectrochemical Properties of a New Donor–Acceptor Polymer Containing 3,4-Dialkoxythiophene and 2,1,3-Benzothiadiazole Units

机译:含3,4-二烷氧基噻吩和2,1,3-苯并噻二唑单元的新型供体-受体聚合物的电化学和光谱电化学性质

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A new heteroarylene-vinylene donor-acceptor low bandgap polymer, the poly(DEHT-V-BTD), containing vinylene-spaced efficient donor (dialkoxythiophene) and acceptor (benzothiadiazole) moieties, is presented. Electropolymerization has been carried out by several electrochemical techniques and the results are compared. In particular, the pulsed potentiostatic method was able to provide layers with sufficient amounts of material. Cyclic voltammetries showed reversible behavior towards both p- and n-doping. The HOMO, LUMO, and bandgap energies were estimated to be −5.3, −3.6 and 1.8 eV, respectively. In situ UV-Vis measurements have established that the presence of the vinylene group stabilizes the formation of polaronic charge carriers even at high doping levels.
机译:提出了一种新的杂亚芳基-乙烯基供体-受体低带隙聚合物,聚(DEHT-V-BTD),其中包含亚乙烯基间隔的有效供体(二烷氧基噻吩)和受体(苯并噻二唑)部分。电聚合已经通过几种电化学技术进行并且比较了结果。特别地,脉冲稳压方法能够为层提供足够量的材料。循环伏安法显示出对p型和n型掺杂的可逆行为。 HOMO,LUMO和带隙能量分别估计为-5.3,-3.6和1.8 eV。原位UV-Vis测量已经确定,即使在高掺杂水平下,亚乙烯基的存在也稳定了极化电子载流子的形成。

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