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Updated: Jul 28, 2026

Harvesting Solar Energy by Means of Charge-Separating Nanocrystals and Their Solids
Published on: August 23, 2012
Cobalt phosphide@S-doped carbon nanobelt arrays derived from metal-organic framework as an efficient bifunctional
Gaoshuang Zuo1, Hong Wang1, Huiqing Yan2
1School of Materials Science and Engineering, North University of China, Taiyuan 030051, PR China; Shanxi Key Laboratory of Efficient Hydrogen Storage & Production Technology and Application, North University of China, Taiyuan 030051, PR China.
Abstract:
Designing highly efficient and cost-effective bifunctional electrocatalyst capable of simultaneously driving hydrogen evolution (HER) and oxygen evolution (OER) reactions is critical for advancing water-splitting technologies. Herein, Co-based thiophene dicarboxylate (Co-TDC) frameworks were fabricated on nickel foam (NF) via a solvothermal approach, followed by low-temperature calcination and subsequent phosphorization to produce Co2P@S-doped carbon (Co2P@SC) composites. The as-prepared Co2P@SC exhibited high electrocatalytic performances with low overpotentials of 78 and 242 mV at 10 mA cm-2 for HER and OER, respectively. Additionally, the water electrolytic cell assembled with Co2P@SC as a bifunctional electrocatalyst demonstrates exceptional performance, requiring only 1.57 V to achieve a current density of 10 mA cm-2, which highlights its outstanding overall water-splitting efficiency. This paper presents a novel approach to fabricate MOFs-derived bifunctional electrocatalysts for high-efficiency overall water splitting.
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