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首页> 外文期刊>Advanced Functional Materials >Atomic Layer Deposition Inducing Integration of Co, N Codoped Carbon Sphere on 3D Foam with Hierarchically Porous Structures for Flexible Hydrogen Producing Device
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Atomic Layer Deposition Inducing Integration of Co, N Codoped Carbon Sphere on 3D Foam with Hierarchically Porous Structures for Flexible Hydrogen Producing Device

机译:原子层沉积诱导钴,氮共掺杂碳球在具有分层多孔结构的3D泡沫中的集成,用于柔性制氢装置

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Integration of metal-organic frameworks on deformation tolerant substrates exhibits a promising prospect in flexible electrode applications. A straightforward synthesis utilizing atomic layer deposition pretreating to induce the growth of a zeolitic imidazolate framework-67 (ZIF-67) layer on carbon foam (CF), which maintains high ZIF-67 loading with a hierarchically porous structure and large surface area of 453 m(2) g(-1) is presented. With a subsequent pyrolysis process, three-dimensional composite structures are obtained with Co, N codoped carbon spheres attached firmly on the CF framework, and CF bridges the individual carbon spheres to construct a conductive pathway. The composites are used as a flexible electrode for hydrogen production both in acid and alkaline electrolytes. The advances in the composite structure, such as the hierarchically porous structure, large surface area, and high loading of active material, lead to excellent electrochemical performance in terms of low overpotential of 142 mV and low Tafel slope of 73 mV dec(-1) in 0.5 m H2SO4. Most importantly, the composite structure with outstanding flexible property shows good catalytic performance under remarkable deformation, and after 100 repeated compression-recovery cycles, the performance degrades slightly. This work provides a new design of flexible electrode, which is promising for the hydrogen production industry.
机译:金属-有机骨架在可变形的基板上的集成在柔性电极应用中显示出有希望的前景。一种简单的合成方法,利用原子层沉积预处理进行处理,以诱导碳泡沫(CF)上的沸石咪唑盐骨架67(ZIF-67)层的生长,该碳层具有较高的ZIF-67负载,具有分层的多孔结构和453的大表面积提出了m(2)g(-1)。在随后的热解过程中,获得了三维复合结构,其中Co,N共掺杂碳球牢固地附着在CF框架上,而CF桥接各个碳球以构建导电路径。该复合材料可用作在酸性和碱性电解质中产生氢的柔性电极。复合结构的进步,例如层次多孔结构,大表面积和高活性材料负载,在142mV的低过电势和73mV dec(-1)的低Tafel斜率方面带来了优异的电化学性能。在0.5 m H2SO4中最重要的是,具有优异柔韧性的复合结构在明显变形下表现出良好的催化性能,并且经过100次重复的压缩恢复循环后,性能略有下降。这项工作提供了一种新的柔性电极设计,这对制氢行业很有希望。

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