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Ultrasmall and phase-pure W2C nanoparticles for efficient electrocatalytic and photoelectrochemical hydrogen evolution

机译:超小且纯相的W2C纳米颗粒可有效地电催化和光电化学制氢

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摘要

Earlier research has been primarily focused on WC as one of the most promising earth-abundant electrocatalysts for hydrogen evolution reaction (HER), whereas the other compound in this carbide family—W2C—has received far less attention. Our theoretical calculations suggest that such a focus is misplaced and W2C is potentially more HER-active than WC. Nevertheless, the preparation of phase pure and sintering-free W2C nanostructures represents a formidable challenge. Here we develop an improved carburization method and successfully prepare ultrasmall and phase-pure W2C nanoparticles. When evaluated for HER electrocatalysis, W2C nanoparticles exhibit a small onset overpotential of 50 mV, a Tafel slope of 45 mV dec−1 and outstanding long-term cycling stability, which are dramatically improved over all existing WC-based materials. In addition, the integration of W2C nanoparticles with p-type Si nanowires enables highly active and sustainable solar-driven hydrogen production. Our results highlight the great potential of this traditionally non-popular material in HER electrocatalysis.
机译:早期的研究主要集中在WC上,它是氢释放反应(HER)中最有希望的地球上富裕的电催化剂之一,而该碳化物家族中的另一种化合物W2C受到的关注却很少。我们的理论计算表明,这种关注点放错了地方,并且W2C可能比WC更具有HER活性。尽管如此,制备纯相和无烧结的W2C纳米结构仍然是一个巨大的挑战。在这里,我们开发了一种改进的渗碳方法,并成功制备了超小且纯相的W2C纳米颗粒。当进行HER电催化性能评估时,W2C纳米粒子的起效电位小,为50 mV,Tafel斜率为45 mV dec -1 ,并且具有出色的长期循环稳定性,与所有现有的WC-基础材料。此外,W2C纳米粒子与p型Si纳米线的集成可实现高度活跃且可持续的太阳能驱动的氢气生产。我们的结果凸显了这种传统上不受欢迎的材料在HER电催化中的巨大潜力。

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