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Enhanced electrocatalytic oxygen evolution of alpha-Co(OH)(2) nanosheets on carbon nanotube/polyimide films

机译:增强electrocatalytic氧气的进化alpha-Co (OH) (2) nanosheets碳纳米管/聚酰亚胺薄膜

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摘要

The future of energy supply depends on innovative breakthroughs in the development of highly efficient, sustainable and low-cost systems for renewable energy conversion and storage. Water splitting is a promising and appealing solution. In this work, we report Co(OH)(2) on the carbon nanotube/polyimide film (PI/CNT-Co(OH)(2)) as an efficient electrocatalyst for the oxygen evolution reaction (OER). The PI/CNT film allows intimate growth of Co(OH)(2) nanosheets on its surface. The nanosheet structure of Co(OH)(2) and the underlying PI/CNT film facilitate the good OER performance of the PI/CNT-Co(OH)(2) film. Co(OH)(2) nanosheets on the PI/CNT film afford an earlier onset of oxygen evolution, a low overpotential of 317 mV and a small Tafel slope of 49 mV per decade in alkaline media. This work applies the PI/CNT film in water splitting to enhance the OER electrocatalytic activity of Co(OH)(2), which opens up a promising avenue for the exploration of highly active electrocatalysts that can replace noble-metal based catalysts for the OER.
机译:未来的能源供应依赖于创新突破发展的高度高效、可持续、低成本的系统可再生能源转换和存储。分裂是一种很有前途的和吸引人的解决方案。在这项工作中,我们报告公司(OH)(2)的碳纳米管/聚酰亚胺薄膜(π/ CNT-Co(哦)(2))作为一个高效electrocatalyst氧气进化反应(OER)。亲密发展有限公司(OH) (2) nanosheets上表面。促进良好的底层π/问电影OER的性能π/ CNT-Co (OH)(2)电影。有限公司(OH) (2) nanosheetsπ/ CNT薄膜负担得起一个低氧进化的早期发病过电压317 mV和一个小塔费尔斜率每十年的49个mV在碱性介质。应用π/ CNT薄膜在水中分解增强的OER electrocatalytic活动有限公司(OH)(2),打开了一个有希望的途径高活性electrocatalysts的探索可以替代贵金属催化剂the OER)。

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