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Edge-nitrogenated graphene nanoplatelets as high-efficiency counter electrodes for dye-sensitized solar cells

机译:Edge-nitrogenated石墨烯nanoplatelets作为高效反电极的涂料的太阳能电池

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Edge-nitrogenated graphene nanoplatelets (ENGNPs) are prepared by a simple and eco-friendly mechanochemical pin-grinding process using flake graphite as the precursor in the presence of nitrogen and investigated as the counter electrodes of dye-sensitized solar cells (DSCs). SEM images and nitrogen adsorption analysis indicate an effective and spontaneous delamination of the pristine graphite into small graphene nanoplatelets by a mechanochemical pin-grinding process. The mechanochemical cracking of the graphitic C-C bond generates activated carbon sites that react directly with nitrogen at the broken edges. The resultant ENGNPs are deposited on a fluorine-doped tin oxide (FTO) substrate by spray coating, and their electrocatalytic activities are investigated systemically in the I-/I-3(-) redox electrolyte. Electrochemical measurements show that the ENGNP electrode possesses excellent electrocatalytic activity for the redox reaction of I-/I-3(-) as evidenced by the low charge-transfer resistance at the interface of the electrode and electrolyte. Under 100 mW cm(-2) illumination, the DSC with the optimized ENGNP counter electrode achieves a conversion efficiency of 7.69%, which is comparable to that of the device with Pt counter electrode.
机译:Edge-nitrogenated石墨烯nanoplatelets (ENGNPs)是由一个简单的和环保的机械化学的使用片状pin-grinding过程石墨作为前体的存在氮和调查的计数器色素增感太阳能电池的电极(DSCs)。SEM图像和氮吸附分析表示一个有效的和自发的分层的原始石墨成小石墨烯nanoplatelets机械化学的pin-grinding过程。开裂的石墨碳碳键生成活性炭的网站直接与反应氮在破碎的边缘。ENGNPs沉积在fluorine-doped锡由喷涂氧化(FTO)衬底,他们electrocatalytic活动调查系统在I - /我(-)氧化还原电解质。电化学测量表明,ENGNP电极具有优良的electrocatalytic活动我,/我的氧化还原反应(-)证明了电荷转移电阻较低在电极的接口电解液。优化的DSC ENGNP计数器电极达到的转换效率7.69%,类似的设备Pt反电极。

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