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首页> 外文期刊>CERAMICS INTERNATIONAL >Studies on synergetic effect of rGO-NiCo2S4 nanocomposite as an effective counter electrode material for DSSC
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Studies on synergetic effect of rGO-NiCo2S4 nanocomposite as an effective counter electrode material for DSSC

机译:RGO-Nico2S4纳米复合材料作为DSSC有效电极材料的协同作用研究

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摘要

Nanocomposites of reduced graphene oxide (rGO) and NiCo2S4 with different amount of graphene oxide (GO) are synthesized through a one- step solvothermal method and their catalytic activity towards I-/I-3(-) redox electrolyte for dye-sensitized solar cell (DSSC) application are reported. The growth mechanism of the pristine hierarchical marigold like microspheres of NiCo2S4 that formed without rGO and the nanocomposite of rGO-NiCo2S4 are also proposed. Electrochemical studies confirmed the synergetic effect of nickel and cobalt ions with the high electrical conductive rGO networks that enhance the electrocatalytic activity of NiCo2S4 nanostructures. The synergistic effect between NiCo2S4 and rGO may be attributed to the higher conductivity of rGO and the inverse spinel crystal structure of NiCo2S4 that have more octahedral catalytic active sites of Cos'. The amount of graphene oxide plays the important role of controlling the DSSC performance and the power conversion efficiency. The efficiency achieved for the rGO-NiCo2S4 counter electrode (CE) based DSSC is 8.15%, which is remarkably higher than that of pristine NiCo2S4 (7.36%), and Pt (7.23%) under the same experimental conditions.
机译:通过一步的溶剂热法合成氧化石墨烯氧化物(RGO)和NicO2S4的纳米复合材料,并通过朝向染料敏化太阳能电池的I- / I-3( - )氧化还原电解质的催化活性合成(DSSC)申请报告。还提出了没有RGO的Nico2S4的微球等丙氨酸分层万寿菊的生长机制,以及Rgo-Nico2S4的纳米复合物的微球。电化学研究证实了镍和钴离子与高导电RGO网络的协同作用,其增强了Nico2S4纳米结构的电催化活性。 NicO2S4和Rgo之间的协同效应可能归因于RGO的较高导电性和NicO2S4的逆尖晶石晶体结构,其具有更多的COS'的八面体催化活性位点。石墨烯氧化物的量起控制DSSC性能和功率转换效率的重要作用。基于RGO-Nico2S4对电极(CE)的DSSC实现的效率为8.15%,其在相同的实验条件下显着高于原始NiCO 2 S 4(7.36%)和Pt(7.23%)。

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