| Literature DB >> 35408513 |
Wei-Qun Zhou1,2, Ben-Jun Xi2, Xi-Wen Chang1,2, Bin Wang2, Xue-Qian Wu1,2, Shuang Li1,2, Ya-Pan Wu1,2, Dong-Sheng Li1,2.
Abstract
A new MOF-74(Ni)/NiOOH heterogeneous composite was synthesized via NiOOH microsphere precursor. The electrocatalytic methanol oxidation reactions' (MOR) performance was assessed. The as-prepared MOF-74(Ni)/NiOOH exhibited excellent activity with high peak current density (27.62 mA·cm-2) and high mass activity (243.8 mA·mg-1). The enhanced activity could be a result of the synergistic effect of the MOF-74(Ni)/NiOOH heterocomposite providing more exposed active sites, a beneficial diffusion path between the catalyst surface and electrolyte, and improved conductivity, favorable for improving MOR performance.Entities:
Keywords: MOF-74(Ni)/NiOOH composite; electrocatalysis; in situ; methanol oxidation reaction; nickel oxide hydroxide
Year: 2022 PMID: 35408513 PMCID: PMC9000767 DOI: 10.3390/molecules27072113
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1(a) PXRD patterns of the as-prepared NiOOH, MOF-74(Ni), and MOF-74(Ni)/NiOOH. (b) FT-IR patterns of as-prepared NiOOH, MOF-74(Ni), and MOF-74(Ni)/NiOOH samples.
Figure 2(a) SEM image of NiOOH. (b,c) SEM image of MOF-74(Ni)/NiOOH. (d) TEM image of MOF-74(Ni)/NiOOH, (e) SEAD pattern of MOF-74Ni/NiOOH. (f) HRTEM image of MOF-74Ni/NiOOH.
Figure 3High-resolution XPS spectra of Ni2p (a) and O1s (b) of NiOOH, MOF-74(Ni), and MOF-74(Ni)/NiOOH.
Figure 4(a) Cyclic voltammetric responses of NiOOH, MOF-74(Ni), and MOF-74(Ni)/NiOOH catalysts. (b) MOR curves of different catalysts operated in 0.1 M KOH in the presence of 1.0 M CH3OH. (c) Comparison of peak current densities for different catalysts. (d) Linear relation between the current densities and square root of scan rates of MOF-74(Ni) and MOF-74(Ni)/NiOOH catalysts.
Figure 5(a) PXRD pattern of MOF-74(Ni)/NiOOH catalysts before and after the MOR process. (b) High-resolution XPS spectra of Ni2p of MOF-74(Ni)/NiOOH catalyst before and after MOR.