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Main group metal elements for ambient-condition electrochemical nitrogen reduction 被引量:1

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摘要 Electrocatalytic N_(2) reduction under ambient-condition is considered to be the most appealing strategy to the conventional Haber-Bosch process for synthetic ammonia to alleviate greenhouse emissions and reduce environmental pollution, mainly powered by renewable energy. Recent years, rapid advances have been gained in this attractive research field, and numerous electrocatalysts have been exploited. However, its conversion efficiency is still far behind the requirement of industrial applications owing to the breakage of the N≡N triple bond, which is an energetically challenging kinetically complex multistep reaction and the strong competing reaction of hydrogen evolution reaction. Recently, main group metal-based catalysts have been demonstrated promising application prospect for ammonia production, significantly boosting their further application in this field. However, a comprehensive review of main group metal-based catalysts towards electrochemical ammonia production applications is still lacking. In this review, the fundamentals of N_(2) reduction, such as the reaction pathways, the reaction potential and the challenges of N_(2) reduction have been comprehensively discussed. And then, the role, mechanism, and effect of each main group element-based catalysts used for N_(2) reduction (Li, K, Al, Ga, Sn, Sb, Bi, and their compounds) are systematically summarized. Finally, several state-of-the-art strategies to promote their NRR catalytic performance, as well as the existing problems and prospects are put forward. This review is expected to guide the design and establishment of more efficient electrocatalytic N_(2) reduction systems based on main group metal elements in the future.
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第11期51-70,I0002,共21页 能源化学(英文版)
基金 This work was supported by the National Natural Science Foundation of China(No.52071171) the Liaoning Revitalization Talents Program-Pan Deng Scholars(XLYC1802005) the Liaoning Bai-QianWan Talents Program(LNBQW2018B0048) the National Science Fund of Liaoning Province for Excellent Young Scholars(2019-YQ-04) the Key Project of Scientific Research of the Education Department of Liaoning Province(LZD201902) the Department of Education of Liaoning Province(LQN201903 and LQN202008) the Foundation for Young Scholars of Liaoning University(LDQN2019007).
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