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首页> 外文期刊>Applied Surface Science >Interfacial electronic structure and electrocatalytic performance modulation in Cu_(0.81)Ni_(0.19) nanoflowers by heteroatom doping engineering using ionic liquid dopant
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Interfacial electronic structure and electrocatalytic performance modulation in Cu_(0.81)Ni_(0.19) nanoflowers by heteroatom doping engineering using ionic liquid dopant

机译:离子液体掺杂剂杂原子掺杂工程对Cu_(0.81)Ni_(0.19)纳米花的界面电子结构和电催化性能的调控

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摘要

Alloy is highly desirable for electrocatalysis due to its superconductivity and structural stability. However, it remains a great challenge to synthesize by a facile synthetic strategy and investigate the synergistic effect for various active components. Herein, a Cu0.81Ni0.19 alloy electrocatalyst doped with N, P, and F heteroatom is constructed by a simple liquid reduction method using ionic liquid as reducing agent and heteroatom dopant. The introduction of ionic liquid not only induces the flower-like morphological characteristics of the Cu0.81Ni0.19 alloy, but also regulates its interfacial electronic structure. This hybrid catalyst exhibits outstanding electrocatalytic performance towards the OER and HER in alkaline medium with ultralow overpotentials of 198 mV and 88 mV at 10 mA.cm(-2), respectively, which is among the most efficient Cu-based alloy electrocatalysts up to now. Combined with DFT calculations indicate that both the electronic structure and the reaction energy barrier of the intermediate are regulated by these heteroatoms in electrocatalysis process. This work opens up a facile method to highly efficient and durable alloy electrocatalysts using ionic liquid as a dopant, and is a promising candidate strategy for other alloy catalysts.
机译:合金由于其超导性和结构稳定性而非常适合用于电催化。然而,通过简便的合成策略合成并研究各种活性成分的协同效应仍然是一个巨大的挑战。在此,通过使用离子液体作为还原剂和杂原子掺杂剂的简单的液体还原方法来构造掺杂有N,P和F杂原子的Cu0.81Ni0.19合金电催化剂。离子液体的引入不仅诱导了Cu0.81Ni0.19合金的花状形态特征,而且调节了其界面电子结构。该杂化催化剂在碱性介质中对OER和HER具有出色的电催化性能,在10 mA.cm(-2)时的超低过电势分别为198 mV和88 mV,是迄今为止最有效的铜基合金电催化剂之一。 。结合DFT计算表明,在电催化过程中,中间体的电子结构和反应能垒均受这些杂原子的调节。这项工作为使用离子液体作为掺杂剂的高效,耐用的合金电催化剂提供了一种简便的方法,对于其他合金催化剂而言,这是一种很有前途的候选策略。

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