Laser Synthesis of MOF-Derived Ni@Carbon for High-Performance Pseudocapacitors

  • Do Van Lam; 
  • Sohail, Muhammad; 
  • Kim, Jae-Hyun; 
  • Lee, Hak Joo; 
  • Han, Seong Ok; 
  • ... Kim, Duckjong; 
  • 외 3명
Citations

WEB OF SCIENCE

64
Citations

SCOPUS

66

초록

Although nanosizing of multiphase pseudocapacitive nanomaterials could dramatically improve their electrochemical properties, a proper way to simultaneously control both the size and the phase of the pseudocapacitive materials is still elusive. Herein, we employed a commercial CO2 laser engraver to do the transformation of a metal-organic framework (MOF-74(Ni)) into size-controlled Ni nanoparticles (4-12 nm) in porous carbon. The produced Ni@ carbon hybrid showed the best specific capacitance of 925 F/g with excellent cycling stability when the particle size is 5.5 nm. We found that the highly redoxactive alpha-Ni(OH)(2) is more predominantly formed than the less redox-active beta-Ni(OH)(2) as the particle size becomes smaller. Our results substantiate that various MOFs could be created into high-performance pseudocapacitive materials with the controlled size and phase. It is believed that the laser-based synthesis could also serve as a powerful tool for the discovery of new MOF-derived materials in the field of energy storage and catalysis.

키워드

laser synthesis; metal-organic framework; nanoparticle; pseudocapacitive material; electrochemical energy storage; ELECTRODE MATERIALS; SURFACE-DIFFUSION; ACTIVATED CARBON; METAL; SUPERCAPACITOR; NANOPARTICLES; TEXTILE; STORAGE
제목
Laser Synthesis of MOF-Derived Ni@Carbon for High-Performance Pseudocapacitors
저자
Do Van Lam; Sohail, Muhammad; Kim, Jae-Hyun; Lee, Hak Joo; Han, Seong Ok; Shin, Jonghwa; Kim, Duckjong; Kim, Hyunuk; Lee, Seung-Mo
DOI
10.1021/acsami.0c10235
발행일
2020-09-02
유형
Article
저널명
ACS Applied Materials & Interfaces
권
12
호
35
페이지
39154 ~ 39162