Tailoring the MOF structure via ligand optimization afforded a dandelion flower like CoS/Co-N-x/CoNi/NiS catalyst to enhance the ORR/OER in zinc-air batteries
Tailoring the MOF structure via ligand optimization afforded a dandelion flower like CoS/Co-Nx/CoNi/NiS catalyst to enhance the ORR/OER in zinc-air batteries
  • Gopalakrishnan, Mohan
  • Etesami, Mohamad
  • Theerthagiri, Jayaraman
  • Choi, Myong Yong
  • Wannapaiboon, Suttipong
  • 외 3명
Citations

WEB OF SCIENCE

45
Citations

SCOPUS

51

초록

Due to their affordability and good catalytic activity for oxygen reactions, MOF-derived carbon composites containing metal alloys have piqued interest. However, during synthesis, MOFs have the disadvantage of causing significant carbon evaporation, resulting in a reduction of active sites and durability. This study proposes tailoring the molecular structure of MOFs by optimizing bipyridine and flexible 4-aminodiacetic terephthalic acid ligands, which have numerous coordination modes and framework structures, resulting in fascinating architectures. MOF frameworks having optimized N and O units are coordinated with Co and Ni ions to provide MOF precursors that are annealed at 700 ? in argon. The MOF-derived Co9S8/Co-N-x/CoNi/Ni3S2@CNS-4 catalyst exhibits excellent catalytic activity, revealing an ORR half-wave potential of 0.86 V and an overpotential (OER) of 196 mV at 10 mA cm(-2), a potential gap of 0.72 V and a Tafel slope of 79 mV dec(-1). The proposed strategy allows for the rational design of N-coordinated Co and CoNi alloys attached to ultrathin N, S co-doped graphitic carbon sheets to enhance bifunctional activity and sufficient active sites. Consequently, the zinc-air battery using the synthesized catalyst shows a high peak power density of 206.9 mW cm(-2) (Pt/C + RuO2 116.1 mW cm(-2)), a small polarization voltage of 0.96 V after 370 h at 10 mA cm(-2), and an outstanding durability of over 2400 cycles (400 h). The key contributions to the superior performance are the synergetic effects of the CoNi alloys plus the N,S-incorporated carbon skeleton, due to the small charge transfer resistances and enhanced active sites of CoNi, metal-S, and pyridinic N.

키워드

OXYGEN REDUCTIONCARBON MATERIALSNANOPARTICLESELECTROCATALYSTS
제목
Tailoring the MOF structure via ligand optimization afforded a dandelion flower like CoS/Co-N-x/CoNi/NiS catalyst to enhance the ORR/OER in zinc-air batteries
제목 (타언어)
Tailoring the MOF structure via ligand optimization afforded a dandelion flower like CoS/Co-Nx/CoNi/NiS catalyst to enhance the ORR/OER in zinc-air batteries
저자
Gopalakrishnan, MohanEtesami, MohamadTheerthagiri, JayaramanChoi, Myong YongWannapaiboon, SuttipongNguyen, Mai ThanhYonezawa, TetsuKheawhom, Soorathep
DOI
10.1039/d2nr04933c
발행일
2022-12
유형
Article
저널명
Nanoscale
14
48
페이지
17908 ~ 17920