材料科学
析氧
碳纳米纤维
电极
电解质
化学工程
静电纺丝
纳米纤维
双金属片
可逆氢电极
纳米颗粒
纳米技术
电催化剂
过电位
电化学
复合材料
碳纳米管
工作电极
聚合物
冶金
物理化学
化学
工程类
金属
作者
Subramani Surendran,Sathyanarayanan Shanmugapriya,Arumugam Sivanantham,Sangaraju Shanmugam,R. Kalai Selvan
标识
DOI:10.1002/aenm.201800555
摘要
Abstract Functionalizing nanostructured carbon nanofibers (CNFs) with bimetallic phosphides enables the material to become an active electrode for multifunctional applications. A facile electrospinning technique is utilized for the first time to develop NiCoP nanoparticles encapsulated CNFs that are used as an energy storage system of supercapattery, and as an electrocatalyst for oxygen reduction, oxygen evolution, and hydrogen evolution reaction in KOH electrolyte. Evolving from the inclusion of bimetallic phosphide nanoparticles, the NiCoP/CNF electrode unveils superior‐specific capacitance (333 Fg −1 at 2 Ag −1 ) and rate capability (87%). The fabricated supercapattery device offers a voltage of 1.6 V that supplies a remarkable energy density (36 Wh kg −1 ) along with an improved power density (4000 W kg −1 ) and unwavering cyclic stability (25 000 cycles). Meanwhile, the NiCoP/CNF electrode has simultaneously performed well as a multifunctional electrocatalyst for oxygen reduction reaction at a half‐wave potential of 0.82 V versus reversible hydrogen electrode and can attain a current density of 10 mA cm −2 at a very low overpotential of 268 and 130 mV for the oxygen evolution reaction and hydrogen evolution reaction, respectively. Thus, the NiCoP/CNF with all its inimitable electrode properties has profoundly proved its proficiency at handling multifunctional challenges in terms of both storage and conversion.
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