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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A comparative study of metal ( Ni, Co, or Mn)-borate catalysts and their photodeposition on rGO/ZnO nanoarrays for photoelectrochemical water splitting
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A comparative study of metal ( Ni, Co, or Mn)-borate catalysts and their photodeposition on rGO/ZnO nanoarrays for photoelectrochemical water splitting

机译:金属(Ni,Co,或Mn) - 硼酸盐催化剂对rgo / ZnO纳米阵列光电沉积的比较研究光电化学水分解

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摘要

Feasible and efficient photoelectrochemical (PEC) water splitting demands a rational integration of solar light absorbers with active electrocatalysts. Herein, we first compare three amorphous metal-borates (M-Bi, M = Ni, Co, Mn) as low-cost electrocatalysts, among which Mn-Bi is proposed for the first time for fabrication of new PEC devices for oxygen evolution reaction (OER). Density functional theory (DFT) calculations compared the catalytic activity of the effective structures in M-Bi and found that NiO6 possesses kinetically the lowest overall OER energy barrier. Experimentally, M-Bi thin layers were self-assembled on reduced graphene oxide (rGO) linked ZnO nanorod arrays respectively, to form a highly efficient ternary PEC system (M-Bi/rGO/ZnO) using a modified photodeposition method. rGO facilitates the fast charge separation in light-absorbing ZnO NAs, while M-Bi (M = Ni, Co, Mn) can improve the kinetics of OER. In accordance with DFT results, Ni-Bi serves as the most active electrocatalyst in such a PEC device, followed by Co-Bi and Mn-Bi. Compared to ZnO, the photoelectroconversion efficiency is elevated by approximately 4 times on Ni-Bi/rGO/ZnO, with its onset potential migrated by 0.17 V in the cathodic direction under one sun illumination.
机译:可行高效的光电化学(PEC)水分裂需要具有活性电催化剂的太阳光吸收器的合理集成。在此,我们首先比较三种无定形金属硼酸盐(M-BI,M = Ni,Co,Mn)作为低成本电催化剂,其中第一次提出了MN-Bi,以制造用于氧气进化反应的新PEC器件(oer)。密度函数理论(DFT)计算比较了M-BI中有效结构的催化活性,发现NiO6具有动力学最低的整体oer能量屏障。通过实验,M-Bi薄层分别在还原的氧化石墨氧化物(RGO)连接的ZnO纳米棒阵列上自组装,以形成使用改进的光致沉积方法的高效三元PEC系统(M-BI / RGO / ZnO)。 Rgo促进了光吸收ZnO NAS中的快速电荷分离,而M-BI(M = Ni,Co,Mn)可以改善Oer的动力学。根据DFT结果,Ni-Bi用作这种PEC器件中最活跃的电催化剂,然后是CO-BI和MN-BI。与ZnO相比,光电振来效率在Ni-Bi / Rgo / ZnO上升高约4倍,其发病电位在一个太阳照明下在阴极方向上迁移0.17V。

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