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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Hierarchical micro-reactor as electrodes for water splitting by metal rod tipped carbon nanocapsule self-assembly in carbonized wood
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Hierarchical micro-reactor as electrodes for water splitting by metal rod tipped carbon nanocapsule self-assembly in carbonized wood

机译:分层微反应器作为电极用于通过金属棒倾斜碳纳米胶囊自组装在碳化木材中的水分裂

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摘要

Materials design of efficient electrochemical micro-reactors is challenging, although hierarchically structured, self-standing electrodes with catalyst arrays offer promise. Herein, catalyst function in compact micro-reactor electrodes is designed by nanostructural tailoring of carbonized wood for efficient water splitting. Specifically, NiFe rod tipped, N-doped graphitic carbon nanocapsule arrays are self-assembled in hierarchical wood, and the benefit of this unique presentation and its promotive effect on accessibility of the catalyst surfaces is apparent. This report also comprises the first wood based micro-reactor electrodes for electrocatalytic water oxidation demonstrating excellent performance. The overpotential for oxygen evolution reaction was as low as 180 mV for 10 mA cm(-2) current density and TOFredox was high at a level of 5.8 s(-1) (at 370 mV overpotential). This hierarchical electrode can also work as bifunctional catalyst (both as anodic and as cathodic electrode) for total water splitting with a cell potential of 1.49 V for 10 mA cm(-2) in alkaline solution, suggestive of their potential also in other electrochemical applications.
机译:高效电化学微量反应器的材料设计具有挑战性,但具有催化剂阵列的分层结构,自站式电极提供承诺。这里,紧凑型微反应器电极中的催化剂功能由碳化木材的纳米结构剪裁设计,用于有效的水分裂。具体而言,NiFe Rod Tippip,N掺杂的石墨碳纳米胶囊阵列在等级木材中自组装,并且这种独特呈现的益处及其对催化剂表面可达性的促进作用是显而易见的。该报告还包括用于电催化水氧化的第一基础基础的微反应器电极,证明了优异的性能。氧气进化反应的过电位低至180mV,10 mA cm(-2)电流密度,浓度高5.8秒(-1)(370mV过电位)。该层级电极还可以作为双官能催化剂(都是阳极和阴极电极),用于总水分分裂,其在碱性溶液中具有1.49V的电池电位,在碱性溶液中为10 mA cm(-2),也提示其潜力在其他电化学应用中。

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