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首页> 外文期刊>Advanced Functional Materials >Ni_xS_y Nanowalls/Nitrogen-Doped Graphene Foam Is an Efficient Trifunctional Catalyst for Unassisted Artificial Photosynthesis
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Ni_xS_y Nanowalls/Nitrogen-Doped Graphene Foam Is an Efficient Trifunctional Catalyst for Unassisted Artificial Photosynthesis

机译:Ni_xS_y纳米壁/氮掺杂石墨烯泡沫是一种无辅助人工光合作用的高效三官能催化剂

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摘要

Solar-to-hydrogen (STH) conversion through unassisted artificial photosynthesis (APS) devices is one of the promising and environmentally friendly strategies for sustainable development. However, the practical large-scale application of the unassisted APS devices is impeded by the need for expensive noble metal-based catalysts in photovoltaics and/or electrolyzers. Herein, well-aligned 2D NixSy nanowalls (2D NixSy NWs) on a 3D nitrogen-doped graphene foam (3D NGF) are synthesized and further employed it in unassisted APS. Due to the positive synergistic effect between the highly electrocatalytic activity of NixSy NW and excellent conductivity of NGF, this low cost material of (2D/3D) NixSy NW/NGF is highly efficient as a multifunctional catalyst in various applications: a counterelectrode for dye-sensitized solar cell (DSSC) and a "bifunctional" electrocatalyst for oxygen and hydrogen evolution for electrocatalytic overall water splitting. Furthermore, three NixSy NW/NGF-based DSSCs as a tandem cell for unassisted solar-driven overall water splitting is connected, using NixSy NW/NGF itself on nickel foams as the anode and cathode. Impressively, such integrated photovoltaic-electrolyzer APS device can achieve an STH efficiency of 3.2% with an excellent stability and low cost. This work opens an avenue to advanced multifunctional materials for the low-cost and unassisted solar-driven overall water splitting.
机译:通过无辅助人工光合作用(APS)设备进行的太阳能转化为氢(STH)是可持续发展的有前途且对环境友好的策略之一。然而,在光伏和/或电解器中对昂贵的贵金属基催化剂的需求阻碍了无辅助APS装置的实际大规模应用。在此,合成了在3D氮掺杂石墨烯泡沫(3D NGF)上排列良好的2D NixSy纳米壁(2D NixSy NWs),并将其进一步用于无辅助APS。由于NixSy NW的高电催化活性与NGF的出色电导率之间的积极协同作用,这种(2D / 3D)NixSy NW / NGF的低成本材料在多种应用中作为多功能催化剂非常高效:染料的对电极敏化太阳能电池(DSSC)和“双功能”电催化剂,用于释放氧气和氢气,以进行电催化的总水分解。此外,使用镍泡沫上的NixSy NW / NGF本身作为阳极和阴极,连接了三个基于NixSy NW / NGF的DSSC作为串联电池,用于太阳能辅助的总水分解。令人印象深刻的是,这种集成的光伏电解器APS装置可实现3.2%的STH效率,同时具有出色的稳定性和低成本。这项工作为低成本和无辅助太阳能驱动的总水分解开辟了先进多功能材料的途径。

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