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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >In situ nano Au triggered by a metal boron organic polymer: efficient electrochemical N2 fixation to NH3 under ambient conditions
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In situ nano Au triggered by a metal boron organic polymer: efficient electrochemical N2 fixation to NH3 under ambient conditions

机译:原位纳米Au由金属硼有机聚合物引发:在环境条件下高效电化学N2固定至NH3

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摘要

Ammonia has been obtained from the Haber- Bosch process for decades, which requires an unendurably high temperature and high pressure. Alternatively, electrochemical conversion of N2 to NH3 turns out to be a promising method with much lower energy consumption and accessible reaction conditions. In this work, a novel nano- gold catalyst supported on a boron organic polymer (Au/M- BOP) was prepared and achieved both excellent ammonia yield and faradaic efficiency at low potential (r(NH3): 45.54 mg h 1 cm 2 or 75.89 mg h 1 mgcat. 1 FE: 10.35%), results that are close to the top of the pyramid compared to published literature results. Moreover, the catalyst is conveniently accessible through a pre- immobilized in situ reduction, and can maintain its electrocatalytic activity for multiple uses, which could have potential implications in the industrialization of the electrocatalytic production of ammonia.
机译:几十年来,已经从Haber-Bosch工艺中获得了氨,这需要难以难以置信的高温和高压。 或者,N 2至NH3的电化学转化结果是具有较低能耗和可接近的反应条件的有希望的方法。 在这项工作中,制备支持在硼有机聚合物(AU / M-BOP)上的新型纳米金催化剂,并在低电位下实现了优异的氨产率和游览效率(R(NH3):45.54mg H 1 cm 2或 75.89 mg h 1 mgcat。1 Fe:10.35%),与发表的文献结果相比,靠近金字塔顶部的结果。 此外,催化剂可通过预固定的原位还原方便地接近,并且可以维持其电催化活性以进行多种用途,这可能对氨的电催化作用的工业化产生潜在的影响。

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