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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Graphitic porous carbon derived from human hair as 'green' counter electrode in quantum dot sensitized solar cells
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Graphitic porous carbon derived from human hair as 'green' counter electrode in quantum dot sensitized solar cells

机译:源自人发的石墨多孔碳作为量子点敏化太阳能电池中的“绿色”对电极

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摘要

One of the challenging issues in quantum dot sensitized solar cells (QDSCs) is to develop robust and green counter electrodes (CEs) that can replace the transition metal chalcogenides which frequently poison the photoanode during device operation. Herein, electrochemically active graphitic porous carbon (GPC), synthesized on a large scale from human hair bio-waste was successfully applied as a highly efficient, low-cost and metal-free CE in QDSC for the very first time. The GPC has uniformly distributed mesopores and graphitic edge sites which facilitate better electrolyte diffusion and charge transfer processes across the electrode/electrolyte interface. The synergistic effect of porosity and structurally ordered graphitic domains on the overall electrocatalytic performance was rationalized through variables such as carbonization time and temperature. Proof of concept QDSCs based on CdS/CdSe co-sensitized TiO2 photoanode and GPC CE registered impressive power conversion efficiencies (PCE) superior to commercial activated charcoal (AC) CE and comparable to the commonly used CEs composed of transition metal chalcogenide, CuxS. (C) 2016 Elsevier Ltd. All rights reserved.
机译:量子点敏化太阳能电池(QDSC)中具有挑战性的问题之一是开发坚固耐用的绿色对电极(CE),它们可以代替过渡金属硫族化物,后者在设备运行期间经常使光阳极中毒。本文中,由人发生物废料大规模合成的电化学活性石墨多孔碳(GPC)首次成功地在QDSC中成功地用作高效,低成本和无金属的CE。 GPC具有均匀分布的中孔和石墨边缘部位,可促进更好的电解质扩散和跨电极/电解质界面的电荷转移过程。孔隙率和结构有序的石墨域对整体电催化性能的协同作用通过碳化时间和温度等变量得以合理化。基于CdS / CdSe共敏化的TiO2光阳极和GPC CE的概念验证QDSC的功率转换效率(PCE)优于商用活性炭(AC)CE,可与由过渡金属硫属元素化物CuxS组成的常用CE相媲美。 (C)2016 Elsevier Ltd.保留所有权利。

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