肖瑶

副教授

副教授 硕士生导师

所在单位:材料科学与工程学院

办公地点:青岛市市北区郑州路53号青岛科技大学CCE-1416

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Decoupling hydrophilicity and superaerophobicity on amorphous molybdenum sulfide for high-rate water splitting

发布时间:2024-12-24 点击次数:

关键字:EVOLUTION; ELECTROCATALYST; IDENTIFICATION; PERFORMANCE; MECHANISM; CATALYSTS; ARRAYS; OXYGEN; ATOMS; CO
摘要:The development of water splitting electrocatalysts with earth-abundant materials capable of delivering high current density is crucial for sustainable H2 2 production. However, the mass transfer including reactants and bubbles usually suffered from the shielding effect of gas adhesion under such circumstance. Here, we report a surface engineering strategy over amorphous molybdenum sulfide (a-MoSx) x ) to synergistically boost its generation and departure of gas bubbles. To begin with, a hydrophilic surface featuring hydroxy groups was constructed via palladium-doping induced sulfur vacancies on a-MoSx, x , which could enhance the local access of aqueous reactant. Furthermore, the departure of gas bubbles could be accelerated by regulating the roughness of the synthesized Pd-MoSx(OH)y x (OH) y nanoarrays. For demonstration purpose of practical applications, the bifunctional PdMoSx(OH)y x (OH) y nanoarrays could deliver a high current density of 1000 mA cm- 2 at 1.99 V for overall water splitting over 100 h.
卷号:497
期号:
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