首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >A modulated electronic state strategy designed to integrate active HER and OER components as hybrid heterostructures for efficient overall water splitting
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A modulated electronic state strategy designed to integrate active HER and OER components as hybrid heterostructures for efficient overall water splitting

机译:一种调制的电子状态策略,旨在将活跃的HER和OER组件集成为混合异性结构,以实现高效的整体水分裂

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摘要

Herein, we report a rational design of one-dimension (1D) porous hybrid heterostructures with the active HER (Mo2C) and OER (Co4S3) embedded N and S co-doped carbon (Co4S3/Mo-2 C-N SC) for the effective overall water splitting. Spectroscopic characterizations reveals that modulated electronic state behaviors are generated by the strong chemical couplings at the nanointerface which triggers the charge from Co2+ to Mo4+/Mo6+ through the interfacial Mo-S-Co bond, resulting in producing the considerable amounts of the active sites (i.e., Co3+, Mo2+, and Mo3+) for the HER and OER in the hybrid heterostructures. Interestingly, Co4S3/Mo-2 C-N SC shows pronounced synergistic effects in electrocatalytic activity for the HER and OER. When Co4S3/Mo-2 C-N SC is used as both anode and cathode for overall water splitting, a low cell voltage of 1.62 eV is generated at 10 mA cm(-2). The interesting work highlights the significance of optimization electronic structure based on transition metal-based bifunctional electrocatalysts for the HER and OER.
机译:在此,我们报告了一维(1D)多孔杂交异质结构的合理设计,其具有活性的HER(MO2C)和OER(CO 4S3)嵌入N和S共掺杂碳(CO4S3 / MO-2 CN SC),用于有效整体水分裂。光谱特征揭示了调制的电子状态行为由纳米表面的强化学偶联产生,该纳米表面触发来自CO 2 +至MO4 + / MO6 +通过界面MO-S-CO键的电荷,导致产生相当大量的活性位点(即Hybrid异质结构中的她和Oer的Co3 +,Mo2 +和Mo3 +)。有趣的是,CO 4S3 / MO-2 C-N SC显示了她和伊尔的电催化作用中发明的协同作用。当CO 4S3 / MO-2 C-N SC用作总水分裂的阳极和阴极时,在10mA cm(-2)时产生1.62eV的低电池电压。有趣的工作突出了基于过渡金属基双功能电催化剂的优化电子结构的重要性。

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