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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Single atom catalysts for boosting electrocatalytic and photoelectrocatalytic performances
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Single atom catalysts for boosting electrocatalytic and photoelectrocatalytic performances

机译:用于升压电催化和光电催化性能的单个原子催化剂

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Electrocatalytic (EC) and photoelectrocatalytic (PEC) water splitting are effective processes for mass production of hydrogen; however, they usually endure large overpotentials or low conversion efficiency. Therefore, the exploration of efficient and scale-up feasible electrocatalysts and cocatalysts is highly desirable. The novel and emerging single Pt atom catalyst is promising to perfectly satisfy the strict requirements of the EC and PEC hydrogen evolution reaction (HER). Herein, a partial nitridation modification strategy is proposed to anchor single platinum (Pt) atoms through the coordination of lone pair electrons of nitrogen atoms with the unoccupied d orbital electrons of Pt atoms. The fixed single Pt atoms are located on a porous nickel framework on nickel foam (Pt-1/N-Ni/NF), and show excellent EC activity with a low overpotential of 33 mV at -10 mA cm(-2) for the HER in neutral solution, which is superior to that of the bench-mark commercial electrocatalyst. In addition, the Pt-1/N-Ni has been integrated into a Cu2O nanowire photocathode as a cocatalyst, and presents a high photocurrent density of -11.9 mA cm(-2) at 0 V vs. RHE and PEC conversion efficiency of 1.75%. The rational design and preparation of a single atom catalyst both as an electrocatalyst for EC and a cocatalyst for PEC water splitting opens up a new avenue for boosting EC and PEC water splitting performance.
机译:电催化(EC)和光电催化(PEC)水裂解是大规模制氢的有效工艺;然而,它们通常承受较大的过电位或较低的转换效率。因此,探索高效且可放大的电催化剂和助催化剂是非常可取的。新型单铂原子催化剂有望完全满足EC和PEC析氢反应(HER)的严格要求。本文提出了一种部分氮化改性策略,通过氮原子的孤对电子与铂原子的未占据d轨道电子的配位来锚定单个铂原子。固定的单个Pt原子位于泡沫镍(Pt-1/N-Ni/NF)上的多孔镍框架上,在中性溶液中,HER表现出良好的EC活性,在-10 mA-cm(-2)下具有33 mV的低过电位,这优于基准商用电催化剂。此外,Pt-1/N-Ni已作为辅助催化剂集成到Cu2O纳米线光电阴极中,在0 V下呈现出-11.9 mA cm(-2)的高光电流密度,而RHE和PEC转换效率为1.75%。单原子催化剂的合理设计和制备,既可以作为EC的电催化剂,也可以作为PEC分解水的助催化剂,为提高EC和PEC分解水的性能开辟了一条新途径。

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