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WN/nitrogen-doped reduced graphite oxide hybrids for triiodide reduction in dye-sensitized solar cells

机译:用于染料敏化太阳能电池的三碘化物降低的Wn /氮掺杂的石墨氧化物杂种

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摘要

The development of low-cost, environmental friendliness, outstanding catalytic activity, superior conductivity and good stability counter electrode (CE) catalyst in dye-sensitized solar cells (DSSCs) is important to promote the commercial application of DSSCs. Here, WN/nitrogen-doped reduced graphite oxide hybrids (WN/NrGO) had been synthesized by hydrothermal method followed by nitridation treatment, which used as CE catalysts for catalyzing I3- to I-. The combined WN and nitrogen-doped reduced graphite oxide (NrGO) into WN/NrGO could effectively regulate the catalytic activity for the reduction of I3-, accelerate the charge transfer at the interface, and then the synergistic effect between of them can be fully achieved. When the WN/NrGO served as the CE catalyst in DSSCs, the photoelectric conversion efficiency (PCE) of 7.42% has been obtained, compared to the conventional Pt-based DSSCs (7.71%). Meanwhile, as-prepared WN/NrGO exhibited higher PCE than that of the solo WN (6.19%) and NrGO (5.81%) in parallel. A series of electrochemical measures revealed that the WN/NrGO displayed the higher catalytic activity and charge transfer ability than that of the solo WN and NrGO, so the synthesized low-cost WN/NrGO have an potential to be used as the effectively CE catalysts for the replacement of the noble Pt.
机译:在染料敏化太阳能电池(DSSCs)中,低成本,环境友好,突出,良好的催化活性,卓越的导电性和良好的稳定性对电极(CE)催化剂的发展是重要的,以促进DSSC的商业应用。这里,通过水热法合成了Wn /氮掺杂的石墨氧化物杂种(Wn / NRGO),然后通过氮化处理合成,其用作催化I3-I-的Ce催化剂。组合的Wn和氮气掺杂的石墨氧化物(NRGO)进入WN / NRGO中可以有效地调节催化活性,以减少I3-,加速界面处的电荷转移,然后可以完全实现它们之间的协同效应。当DSSCS中的WN / NRGO用作CE催化剂时,与常规PT基DSSCs(7.71%)相比,已经获得了7.42%的光电转换效率(PCE)。同时,如准备的WN / NRGO呈高于单独的PCE(6.19%)和NRGO(6.19%)和NRGO(5.81%)。一系列电化学措施揭示了WN / NRGO显示的催化活性和电荷转移能力高于单选WN和NRGO的电荷转移能力,因此合成的低成本WN / NRGO具有潜力作为有效的CE催化剂更换贵族pt。

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