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首页> 外文期刊>Electrochimica Acta >Low-temperature titania-graphene quantum dots paste for flexible dye-sensitised solar cell applications
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Low-temperature titania-graphene quantum dots paste for flexible dye-sensitised solar cell applications

机译:用于柔性染料敏化太阳能电池应用的低温二氧化钛 - 石墨烯量子点浆料

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Graphene possesses excellent mechanical strength and chemical inertness with high intrinsic carrier mobility and superior flexibility making them exceptional candidates for optoelectronic applications. Graphene quantum dots (GQDs) derived from graphene domains have been widely explored to study their photoluminescence properties which can be tuned by size. GQDs are biocompatible, low cytotoxic, strongly luminescent and disperse well in polar and non-polar solvents showing bright promise for the integration into devices for bioimaging, light emitting and photovoltaic applications. In the present study, graphene quantum dots were synthesized by an electrochemical cyclic voltammetry technique using reduced graphene oxide (rGO). GQDs have been incorporated into binder free TiO2 paste and studied as a photoelectrode material fabricated on ITO/PEN substrates for flexible dye sensitised solar cells (DSSCs). DSSC based on GQDs-TiO2 exhibited open circuit output potential difference (V-oc) of 0.73 V, and short circuit current density (J(sc)) of 11.54 mA cm(-2) with an increment in power conversion efficiency by 5.48%, when compared with those with DSSC build with just a TiO2 photoanode (open-circuit output potential difference (V-oc) of 0.68 V and short circuit density (J(sc)) of 10.67 mA cm(-2)). The results have been understood in terms of increased charge extraction and reduced recombination losses upon GQDs incorporation. Crown Copyright (C) 2019 Published by Elsevier Ltd. All rights reserved.
机译:石墨烯具有优异的机械强度和化学惰性,具有高固有的载流子迁移率和优异的柔韧性,使其成为光电应用的特殊候选者。已经普遍探索衍生自石墨烯结构域的石墨烯量子点(GQDS)以研究其光致发光性能,可以通过尺寸调谐。 GQDS是生物相容性的,低细胞毒性,强烈的发光,在极性和非极性溶剂中分散井,显示到用于生物影像,发光和光伏应用的装置中的光亮承诺。在本研究中,通过使用还原的氧化石墨烯(RGO)通过电化学环伏安法技术合成石墨烯量子点。 GQD已掺入粘合剂免疫TiO 2浆料中,并作为在柔性染料敏化太阳能电池(DSSCs)的ITO /笔基板上制造的光电电极材料。基于GQDS-TiO2的DSSC表现出0.73V的开放电路输出电位差(V-OC),11.54 mA cm(-2)的短路电流密度(j(sc)),功率转换效率增加5.48% ,与具有DIO2 PhotoNode(开路输出电位差(V-OC)的DSSC构建的那些相比,0.68 V和短路密度(j(sc))为10.67 mA cm(-2))。在提高电荷提取和降低的GQD掺入时,结果已经理解结果。皇冠版权(c)2019由elestvier有限公司出版。保留所有权利。

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