Engineering core-shell hollow-sphere Fe3O4@FeP@nitrogen-doped-carbon as an advanced bi-functional electrocatalyst for highly-efficient water splitting

  • Chen, Kai; 
  • Kim, Gyu-Cheol; 
  • Kim, Chiyeop; 
  • Yadav, Sunny; 
  • Lee, In-Hwan
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27
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초록

Given the rapidly increasing energy demand and environmental pollution, to achieve energy conservation and emission reduction, hydrogen production has emerged as a promising alternative to traditional fossil fuels because of its high gravimetric energy density, and renewable and environmentally friendly characteristics. Herein, a core-shell hollow-sphere Fe3O4@FeP@nitrogen-doped-carbon (labeled as H-Fe3O4@FeP@NC) with a dual-interface, novel morphology, and superior conductivity is prepared as an advanced bi-functional electro-catalyst for electrochemical overall water splitting using a collaborative strategy comprising of facile self -assembly and phosphating. The prepared catalyst exhibits superior electrocatalytic activity compared to H-Fe3O4@NC and H-Fe3O4 for oxygen evolution reaction (OER) and hydrogen evolution reaction (HER). Addi-tionally, the overpotential of H-Fe3O4@FeP@NC for OER/HER (258/165 mV at 10 mA/cm2) is significantly lower than those of H-Fe3O4@NC (274/209 mV) and H-Fe3O4 (287/213 mV) at 10 mA/cm2. Meanwhile, the as -synthesized H-Fe3O4@FeP@NC, as an electrode pair, displays a low cell voltage of 1.69 V at 10 mA/cm2 and excellent stability after 100 h, indicating its practical application for overall water splitting. This work presents a practical and economical strategy toward the fabrication of catalyst for efficient water splitting and fuel cell.

키워드

Core -shell hollow -sphere; Dual -interface; Superior conductivity; HER/OER; Overall water splitting; DOPED CARBON; NANOPARTICLES; PERFORMANCE; CATALYSTS; DESIGN; ION; XPS
제목
Engineering core-shell hollow-sphere Fe3O4@FeP@nitrogen-doped-carbon as an advanced bi-functional electrocatalyst for highly-efficient water splitting
저자
Chen, Kai; Kim, Gyu-Cheol; Kim, Chiyeop; Yadav, Sunny; Lee, In-Hwan
DOI
10.1016/j.jcis.2023.11.184
발행일
2024-03
유형
Article; Early Access
저널명
Journal of Colloid and Interface Science
권
657
페이지
684 ~ 694