首页> 外文期刊>Dyes and Pigments >Simultaneously enhancing the dielectric constant, photo-response and deepening HOMO levels of benzo[1,2-b;4,5-b '] dithiophene derivatives-based conjugated polymers
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Simultaneously enhancing the dielectric constant, photo-response and deepening HOMO levels of benzo[1,2-b;4,5-b '] dithiophene derivatives-based conjugated polymers

机译:同时增强苯并[1,2-B; 4,5-B']二噻吩衍生物的缀合聚合物的介电常数,光响应和深化均匀水平

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摘要

An alternating conjugated polymer (CPs) named as PBDT-TS-DPP, derived from 2-ethylhexylthiothiophen-2-yl-flanked (TS) benzo[1,2-b;4,5-b']dithiophene (BDT-TS) and diketopyrrolopyrrole derivatives (DPP), was prepared by Palladium-catalyzed Stille coupling reaction. The comparison investigations of the opto-electronic properties and aggregation characteristics between the PBDT-TS-DPP and PBDT-T-DPP, which was derived from 2-ethylhexylthiophen-2-yl-flanked (T) benzo [1,2-b;4 5 5-bldithiophene (BDT-T) and DPP, were implemented. The results indicated that the PBDT-TS-DPP not only presented narrower optical band gap, deeper HOMO energy levels, similar charger transporting and aggregation characteristics etc., but also held enhanced relative dielectric constant (epsilon(r)) in relative to that for the PBDT-T-DPP. To our knowledge, it is firstly to verify that the replacement of T with TS flanks would result in the enhancing epsilon(r) besides the deepening HOMO energy levels and broadening the light response range for the BDT based CPs. Beyond that, the inverted photovoltaic cells (i-OPVs) with power conversion efficiencies (PCEs) of 5.48% and 4.78%, open circuit voltage (V-OC) of 0.78 V and 0.74 V, short current density (J(SC)) of 11.52 mA/cm(2) and 9.46 mA/cm(2), fill factors (FF) of 61.0% and 68.3%, were respectively presented in PBDT-TS-DPP and PBDT-T-DPP based i-OPVs. Meanwhile, it has also been certified that the i-OPVs from PBDT-TS-DPP exhibited higher exciton dissociation probability, charge carrier density, charger carriers lifetime, and lower recombination rate co-efficiency etc., which might be attributed to the higher dielectric constant of PBDT-TS-DPP as compared with PBDT-T-DPP, thus devote to the additional improvement of the PCEs, V-OC and J(SC) for the PBDT-TS-DPP based i-OPVs, except that the improvement of the these parameters were compensated from the deepening HOMO energy level and broadening light response of the PBDT-TS-DPP.
机译:作为PBDT-TS-DPP的交替共轭聚合物(CPS),衍生自2-乙基己基噻吩-2-基侧(TS)苯并[1,2-B; 4,5-B']二噻吩(BDT-TS)并通过钯催化的stille偶联反应制备二酮吡咯氧吡咯衍生物(DPP)。 PBDT-TS-DPP和PBDT-T-DPP与PBDT-TS-DPP和PBDT-T-DPP之间的聚集特性的比较研究,其衍生自2-乙基己基噻吩-2-基侧(T)苯并[1,2-B; 4 5 5-Bldithiophene(BDT-T)和DPP,是实施的。结果表明,PBDT-TS-DPP不仅呈现较窄的光带隙,更深的同性能水平,类似的充电器传输和聚集特性等,而且还相对于其举起了增强的相对介电常数(epsilon(re)) PBDT-T-DPP。为了我们的知识,首先验证具有TS侧面的T的替代将导致增强ε(R)除了加深的同性能水平并扩大基于BDT的CPS的光响应范围。除此之外,倒光电池(I-OPV)的电力转换效率(PCE)为5.48%和4.78%,开路电压(V-OC)为0.78 V和0.74 V,电流密度短(J(SC))在11.52mA / cm(2)和9.46mA / cm(2)中,填充因子(FF)分别在PBDT-TS-DPP和基于PBDT-T-DPP的I-OPV中呈现61.0%和68.3%。同时,它还证明了来自PBDT-TS-DPP的I-OPV,展示了更高的激子解离概率,电荷载体密度,充电器载体寿命和更低的重组率共同效率等,这可能归因于更高的电介质与PBDT-T-DPP相比,PBDT-TS-DPP的常数,从而为基于PBDT-TS-DPP的PBS,V-OC和J(SC)的额外改进而言,除了改进之外这些参数从深化的同性能水平和PBDT-TS-DPP的扩大光响应得到补偿。

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