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首页> 外文期刊>Electrochimica Acta >How do 10-camphorsulfonic acid, silver or aluminum nanoparticles influence optical, electrochemical, electrochromic and photovoltaic properties of air and thermally stable triphenylamine-based polyazomethine with carbazole moieties?
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How do 10-camphorsulfonic acid, silver or aluminum nanoparticles influence optical, electrochemical, electrochromic and photovoltaic properties of air and thermally stable triphenylamine-based polyazomethine with carbazole moieties?

机译:10-樟脑磺酸,银或铝纳米粒子如何影响空气和具有咔唑基团的热稳定的基于三苯胺的聚偶氮甲碱的光学,电化学,电致变色和光伏性质?

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摘要

Organic (10-camphorsulfonic acid, CSA), organic-inorganic (Ag-poly(vinylpyrrolidone), Ag-PVP with 10 and 20 nm size of Ag) or inorganic (Al, 18 nm) compounds were applied as new components of active layer in bulk heterojunction polymer solar cells based on a new polyazomethine (PAZ-Car-TPA) resulting in significant change of optical and electrical properties. Moreover, colloidal Ag (100 nm) and Ag-PVP in aqueous solution (10 nm) were tested as an addition to the hole transporting layer based on PEDOT:PSS in polyazomethine solar cells. CSA added to PAZ-Car-TPA decrease its energy gap from 1.91 to 1.20 eV and causes a significant bathochromic shift of the maximum of absorption band along with the change of the polymer color from yellow to red (electrochromic behavior). Photoluminescence maximum of PAZ-Car-TPA protonated with CSA showed 120 nm redshift from 500 to 620 nm in comparison to undoped PAZCar-TPA. HOMO-LUMO of PAZ-Car-TPA and its mixture with CSA were analyzed by cyclic voltammetry and quantum mechanical calculations using Density Functional Theory method. Refraction index and extinction coefficient of PAZ-Car-TPA and its mixtures with PC71BM as well as Ag or Al nanoparticles were investigated taking into consideration various thickness of polymer layer. The power conversion efficiency of the ITO/PEDOT: PSS/PAZ-Car-TPA: PCBM: CSA/Al device was five time higher than that of the device based on PAZ-Car-TPA: PCBM. Such an enhancement was found to be primarily due to the increase of the short-circuit current, suggesting that the charge collection increases upon the incorporation of CSA in the active layer. Moreover, presence of Ag-PVP (20 nm) or Al (18 nm) in device increased short circuit current of the constructed polymer solar cells. Additionally, devices were tested by external quantum efficiency measurements and electrochemical impedance spectroscopy in dark and under illumination. The polymer solar cell with PAZ-Car-TPA as donor in active layer showed good stability over 600 hours, when stored in a climatic chamber. (C) 2015 Elsevier Ltd. All rights reserved.
机译:有机(10-樟脑磺酸,CSA),有机-无机(Ag-聚(乙烯基吡咯烷酮),Ag尺寸为10和20 nm的Ag-PVP)或无机(Al,18 nm)化合物用作活性层的新成分基于新型聚偶氮甲碱(PAZ-Car-TPA)的体异质结聚合物太阳能电池的应用,导致了光学和电气性能的显着变化。此外,测试了在聚偶氮甲碱太阳能电池中基于PEDOT:PSS的胶体Ag(100 nm)和水溶液(10 nm)中的Ag-PVP作为空穴传输层的添加物。添加到PAZ-Car-TPA中的CSA将其能隙从1.91 eV减小到1.20 eV,并引起最大吸收带的显着红移,以及聚合物颜色从黄色变为红色(电致变色行为)。与未掺杂的PAZCar-TPA相比,用CSA质子化的PAZ-Car-TPA的最大光致发光显示从500 nm到620 nm有120 nm的红移。通过循环伏安法和使用密度泛函理论方法的量子力学计算,分析了PAZ-Car-TPA的HOMO-LUMO及其与CSA的混合物。考虑到聚合物层的各种厚度,研究了PAZ-Car-TPA及其与PC71BM的混合物以及Ag或Al纳米粒子的折射率和消光系数。 ITO / PEDOT:PSS / PAZ-Car-TPA:PCBM:CSA / Al器件的功率转换效率比基于PAZ-Car-TPA:PCBM的器件高五倍。发现这种增强主要是由于短路电流的增加,这表明在有源层中掺入CSA时电荷收集增加。此外,器件中存在Ag-PVP(20 nm)或Al(18 nm)会增加所构造的聚合物太阳能电池的短路电流。另外,通过外部量子效率测量和在黑暗和光照下的电化学阻抗谱对设备进行了测试。当将PAZ-Car-TPA作为供体在活性层中的聚合物太阳能电池保存在气候室内时,在600小时内显示出良好的稳定性。 (C)2015 Elsevier Ltd.保留所有权利。

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