4.8 Article

Common Strategy: Mounting the Rod-like Ni-Based MOF on Hydrangea-Shaped Nickel Hydroxide for Superior Electrocatalytic Methanol Oxidation Reaction

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 13, 期 22, 页码 26472-26481

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.1c04282

关键词

nickel hydroxide; MOF-74; in situ synthesis; heterostructure; methanol oxidation reaction

资金

  1. NSF of China [21971143, 21805165]
  2. 111 Project [D20015]
  3. Natural Science Foundation of Hubei Province [2020CFB686]
  4. ITOYMR in the Higher Education Institutions of Hubei Province [T201904]

向作者/读者索取更多资源

A novel strategy was developed for efficient methanol oxidation reaction (MOR) through the design of hierarchically structured Ni-MOF on Ni(OH)(2) heterocomposite, which exhibited improved catalytic performance with more active sites, easy ion diffusion path, and enhanced conductivity. The results demonstrated the potential universality of this strategy in synthesizing new composite materials with specific hierarchical structures for a more efficient electrocatalytic system.
Developing efficient metal-organic framework (MOF)-based electrocatalysts with improvable activity and persistence toward the methanol oxidation reaction (MOR) is attracting great research attention but still remains an enormous challenge. Herein, a facile strategy, hydrangea-shaped nickel hydroxide template-directed synthesis of the hierarchically structured Ni-MOF on the Ni(OH)(2) heterocomposite (denoted as Ni-Ni) for efficient MOR, is developed. The unique hierarchical structure and synergistic effect of the heterocomposite afford more exposed active sites, a facile ion diffusion path, and improved conductivity, favorable for improving MOR catalytic performance. Remarkably, the optimized Ni-Ni-2 material delivers an excellent activity with a high peak current density (24.6 mA cm(-2)). Furthermore, to prove the universality of this strategy, NixCu1-x(OH)(2) isometallic hydroxide was used as the precursor, and a series of MOF-74/NixCu1-x(OH)(2) (denoted as Ni-NiCu) heterogeneous materials have been prepared and could be used as an effective electrocatalyst to catalyze MOR. The results indicate that this strategy can be used in the synthesis of other new composite materials with specific hierarchical structures for a more efficient electrocatalytic system.

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