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首页> 外文期刊>Dyes and Pigments >Diketopyrrolopyrrole/perylene-diimide and thiophene based D-pi-A low bandgap polymer sensitizers for application in dye sensitized solar cells
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Diketopyrrolopyrrole/perylene-diimide and thiophene based D-pi-A low bandgap polymer sensitizers for application in dye sensitized solar cells

机译:用于在染料敏化太阳能电池的染料中施用的二酮 - 二酰亚胺和噻吩基二酰亚胺和噻吩基D-PI-A低带隙聚合物敏化剂

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In this study, diketopyrrolopyrrole-alt-thiophene (P1 and P2) and perylene-diimide-alt-thiophene (P3 and P4) based donor-pi-acceptor (D-pi-A) copolymers have been synthesized from the corresponding monomers through Pd-catalyzed Sonogashira polymerization protocol. The well defined and soluble p-conjugated copolymers having alkyl and fluoroalkyl substituents (P1-P4) have been characterized by multinuclear NMR spectra as well as by tetradetector GPC studies showing molecular weight (M-n) in the range of 18-20 kDa with good polydispersity indices of 1.31-1.48. The donor-acceptor based copolymers absorb broadly throughout the visible region. Notably, perylene diimide-thiophene based copolymers (P3 and P4) exhibits an absorption onset at ca. 800 nm corresponding to a bandgap of 1.63 and 1.61 eV (E-g(opt)). DFT computational studies of the model pi-conjugated units have also been investigated to understand the molecular geometries and electronic properties of the polymeric unit. The synthesized D-pi-A polymers have been utilized as active materials for polymer-sensitized solar cells (PSSCs). The copolymers are effectively adsorbed onto the surface of nanostructured TiO2 photoanode as a result of facile interaction of the anchored -C=O units with the metal oxide surface. The spectral profile of the polymer films on mesoporous oxide surface approximately similar to the solution absorption spectra of the polymer. Interestingly, the polymers featuring perylene diimide unit (P3 and P4) exhibit promising power conversion efficiency (PCE) of 2.71 and 2.96% with a short circuit current (J(SC)) of 7.54 and 7.85 mA cm(-2) respectively, and IPCE of 42-45% under 1.5 AM illumination.
机译:在该研究中,已经通过PD从相应的单体合成了基于二酮吡咯醇-ATT-噻吩(P1和P2)和基于P1和P2)和基于P1和P2)的供体 - PI-Atherophers(D-PI-A)共聚物 - 催化Sonogashira聚合方案。具有烷基和氟代烷基取代基的明确和可溶性的p缀合的共聚物(P1-P4)的特征在于多核NMR光谱,以及通过具有良好多分散性的18-20kDa的分子量(Mn)的TetraDector GPC研究表征1.31-1.48的指数。基于供体基的共聚物在整个可见区域中吸收宽。值得注意的是,基于二酰亚胺 - 噻吩基的共聚物(P3和P4)在CA上表现出吸收发作。对应于1.63和1.61eV(E-G(OPT))的带隙的800nm。还研究了模型PI-共轭单元的DFT计算研究以了解聚合物单元的分子几何形状和电子性质。合成的D-PI-A聚合物已被用作聚合物敏化太阳能电池(PSSCs)的活性材料。由于锚定-C = O单元与金属氧化物表面的相互作用,共聚物有效地吸附到纳米结构TiO2光电的表面上。聚合物膜对介孔氧化物表面上的光谱曲线大致类似于聚合物的溶液吸收光谱。有趣的是,具有Perylene二酰亚胺单元(P3和P4)的聚合物具有2.71和2.96%的有希望的功率转换效率(PCE),短路电流(J(SC))分别为7.54和7.85 mA cm(-2), 42-45%的IPCE在1.5下照明下。

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