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Edge-carboxylated graphene nanoplatelets as oxygen-rich metal-free cathodes for organic dye-sensitized solar cells

机译:边缘羧基化石墨烯纳米片作为有机染料敏化太阳能电池的富氧无金属阴极

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摘要

Edge-carboxylated graphene nanoplatelets (ECGnPs) were synthesized by the simple, efficient and eco-friendly ball-milling of graphite in the presence of dry ice and used as oxygen-rich metal-free counter electrodes (CEs) in organic dye-sensitized solar cells (DSSCs), for the first time. The resultant ECGnPs are soluble in many polar solvents including 2-propanol due to the polar nature of numerous carboxylic acids at edges, allowing an electrostatic spray (e-spray) to be deposited on fluorine-doped SnO2 (FTO)/glass substrates. The ECGnP-CE exhibited profound improvements in the electrochemical stability for the Co(bpy)3 2+/3+ redox couple compared to the platinum (Pt)-CE. The charge transfer resistance (RCT), related to the interface between an electrolyte and a CE, was significantly reduced to 0.87 Ω cm2, much lower than those of (Pt)-CE (2.19 Ω cm 2), PEDOT:PSS-CE (2.63 Ω cm2) and reduced graphene oxide (rGO)-CE (1.21 Ω cm2). The DSSC based on the JK-303-sensitizer and ECGnP-CE displayed a higher photovoltaic performance (FF, Jsc, and η, 74.4%, 14.07 mA cm-2 and 9.31%) than those with the Pt-CE (71.6%, 13.69 mA cm-2 and 8.67%), PEDOT:PSS (68.7%, 13.68 mA cm-2 and 8.25%) and rGO-CE (72.9%, 13.88 mA cm-2 and 8.94%).
机译:通过在干冰存在下对石墨进行简单,高效和生态友好的球磨合成了边缘羧基化的石墨烯纳米片(ECGnP),并在有机染料敏化太阳能中用作富含氧的无金属对电极(CE)单元(DSSC),这是第一次。由于边缘处许多羧酸的极性,所得的ECGnP可溶于包括2-丙醇在内的许多极性溶剂中,从而使静电喷雾(电子喷雾)沉积在掺氟的SnO2(FTO)/玻璃基板上。与铂(Pt)-CE相比,ECGnP-CE在Co(bpy)3 2 + / 3 +氧化还原对的电化学稳定性方面表现出了极大的改进。与电解质和CE的界面有关的电荷转移电阻(RCT)显着降低至0.87Ωcm2,远低于(Pt)-CE(2.19Ωcm 2),PEDOT:PSS-CE( 2.63Ωcm2)和还原氧化石墨烯(rGO)-CE(1.21Ωcm2)。基于JK-303敏化剂和ECGnP-CE的DSSC的光伏性能(FF,Jsc和η分别为74.4%,14.07 mA cm-2和9.31%),高于具有Pt-CE的光伏性能(71.6%, 13.69 mA cm-2和8.67%),PEDOT:PSS(68.7%,13.68 mA cm-2和8.25%)和rGO-CE(72.9%,13.88 mA cm-2和8.94%)。

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