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Bismuth hollow nanospheres for efficient electrosynthesis of ammonia under ambient conditions

机译:铋中空纳米球在环境条件下有效电气合成氨

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摘要

Electrochemical synthesis of NH3, when coupled with renewable energy, provides an attractive alternative to the energy- and capital-intensive Haber-Bosch process. Crucial to enabling this vision is the development of highly active and selective catalysts for the electrochemical nitrogen reduction reaction (ENRR). Herein, we report a facile synthesis of hollow and solid bismuth (Bi) nanospheres catalysts using a one-pot solvothermal method. As a consequence of its hierarchical macroporous-mesoporous architecture, Bi hollow nanospheres catalyst exhibited significantly improved catalytic performance towards the ENRR compared with its solid counterpart. Remarkably, the Bi nanocatalyst enabled ammonia electrosynthesis with a yield of 23.4 1.3 lig 11-1 mg-lcat. and a corresponding FE as high as 19.8 1.1% at ambient conditions, which outperformed most ENRR catalysts reported up to date. (C) 2020 Elsevier B.V. All rights reserved.
机译:与可再生能源相结合时,NH3的电化学合成为能源和资本密集型HABER-BOSCH工艺提供了一种有吸引力的替代品。 实现这种视觉的至关重要是为电化学氮还原反应的高活性和选择性催化剂的开发(RERR)的开发。 在此,我们通过单罐溶剂热法报告中空和固体铋(BI)纳米球催化剂的容易合成。 由于其层级大孔 - 中孔架构,与其固体对应物相比,Bi中空纳米球催化剂表现出显着提高催化性能的催化性能。 值得注意的是,双纳米催化剂使氨电合成的产率为23.4 1.3起1-1mg-LCAT。 在环境条件下,相应的Fe高达19.8个1.1%,这一表现优于迄今为止的大多数enrr催化剂。 (c)2020 Elsevier B.v.保留所有权利。

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