4.5 Article

A highly mismatched NiO2-to-Pd hetero-structure as an efficient nanocatalyst for the hydrogen evolution reaction

期刊

SUSTAINABLE ENERGY & FUELS
卷 4, 期 5, 页码 2541-2550

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d0se00185f

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资金

  1. National Tsing Hua University, Taiwan [107Q2706El]
  2. Ministry of Science and Technology, Taiwan [MOST 106-2112-M-007-016-MY3, MOST 108-3116-F-007-001, MOST 109-3116-F-007-001]
  3. Hierarchical Green-Energy Materials (Hi-GEM) Research Center, from The Featured Areas Research Center Program
  4. Ministry of Science and Technology in Taiwan [MOST 107-3017-F-006-003]

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Efficient generation of hydrogen from water is a key enabling technology towards alternative power generation sources. In this context, search for highly active and low-cost nanocatalysts (NCs) for the hydrogen evolution reaction (HER) is a crucial endeavour. In the present study, bimetallic NiPd with a novel epitaxial structure of tetrahedral symmetric Ni oxide (NiOT) to metallic Pd contact (denoted as NiPd-CNT) has been fabricated on a carbon nanotube (CNT) support via a wet chemical reduction method to boost HER kinetics in an acidic medium (0.5 M H2SO4). This unique structure exhibits superior catalytic activity towards the HER with a significantly lower overpotential of 46 mV (at a current density of 10 mA cm(-2)). Moreover, the NiPd-CNT NC showed a low Tafel slope of 38.0 mV dec(-1). The overpotential and Tafel slope values are 50 mV and 22.18 mV dec(-1) lower, respectively, as compared to those of the standard Pd-CNT NC and very close to the those of the commercial J.M.-Pt/C (30 wt% Pt) NC (overpotential is 44 mV@10 mA cm(-2) and the Tafel slope is 30.2 mV dec(-1)). Of special relevance, the as-prepared NiPd-CNT NC exhibits nearly similar to 95% stability when operated for 1000 cycles. Such a competitive HER performance is attributed to the formation of active sites on the catalyst surface due to strong lattice mismatch and electronegativity difference (chi(Pd) > chi(Ni)) at the heterogonous binary interface of NiO2 and Pd nanocrystals. In light of the competitive activity as compared to that of commercial J.M.-Pt/C with low cost, Pd-based bimetallic NCs can serve as a promising alternative to Pt for seizing the market.

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