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Self-assembled CoSe2-FeSe2 heteronanoparticles along the carbon nanotube network for boosted oxygen evolution reaction

机译:自组装CoSe2-FeSe2 heteronanoparticles沿着碳纳米管网络推动了氧发生反应

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摘要

Water electrolysis is a significant alternative technique to produce clean hydrogen fuel in order to replace environmentally destructive fossil fuel combustion. However, the sluggish oxygen evolution kinetics makes this process vulnerable as it requires relatively high overpotentials. Hence, significantly effective electrocatalysts are necessary to access the water-oxidation process at a low overpotential to make this process industrially viable. Therefore, in order to reduce the energy barrier, we developed bimetallic CoSe2-FeSe2 heteronanoparticles along the carbon nanotube network (CoSe2-FeSe2/CNT) via a facile selenization strategy. Due to the unique assembly of highly conductive nanoparticles along the CNT network, the CoSe2-FeSe2/CNT displays an exceptionally good oxygen evolution (OER) activity; it requires 248 mV overpotential to reach a current density of 10 mA cm(-2) (eta(10)) with an ultra-low Tafel slope of 36 mV dec(-1) and displays an overpotential of 1.59 V (eta(10)) in the full water-splitting catalysis with the commercial Pt/C cathode. The high OER activity of CoSe2-FeSe2/CNT over the monometallic CoSe2/CNT and FeSe2/CNT electrocatalysts approve the synergistic interactions. Therefore, the superior performance is possibly ascribed to the unique porous nanoarchitecture and the strong coupling interactions between CoSe2 and FeSe2 heteronanoparticles on the conductive network. This study introduces an innovative approach to rationally design and fabricate cost-effective and highly proficient electrocatalysts for boosted OER performance.
机译:电解水是一个重要的选择技术生产清洁的氢燃料来取代对环境破坏性的化石燃料燃烧。这个过程演化动力学使脆弱因为它需要相对高的过电压。因此,electrocatalysts显著有效需要访问水氧化低过电压使这个过程工业上可行的过程。减少能量势垒,我们开发了双金属CoSe2-FeSe2 heteronanoparticles沿着碳纳米管网络(CoSe2-FeSe2 / CNT)通过一个简单selenization策略。高导电纳米粒子的组装问网络,CoSe2-FeSe2 CNT /显示一个特别好氧进化(OER)活动;达到一个电流密度马10厘米(2)(η(10))的超低塔费尔斜率36 mV 12月(1)并显示一个过电压的1.59 V(η(10))在完整的水分解的催化商业Pt / C阴极。CoSe2-FeSe2 / CNT在单矿物CoSe2 /问和FeSe2 / CNT electrocatalysts批准协同交互。可能是归因于独特的性能多孔nanoarchitecture和强耦合CoSe2和FeSe2之间的相互作用heteronanoparticles导电网络。本研究引入了一个创新的方法合理设计和制造成本和高度熟练electrocatalysts提高OER的性能。

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