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Design Strategies toward Advanced MOF-Derived Electrocatalysts for Energy-Conversion Reactions

机译:先进的MOF衍生的用于能量转化反应的电催化剂的设计策略

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The key challenge to developing renewable and clean energy technologies lies in the rational design and synthesis of efficient and earth-abundant catalysts for a wide variety of electrochemical reactions. This review presents materials design strategies for constructing improved electrocatalysts based on MOF precursors/ templates, with special emphasis on component manipulation, morphology control, and structure engineering. Guided by these strategies, recently developed MOF-derived materials have exhibited remarkable activity, selectivity, and stability for various energy-conversion processes, manifesting great potential for replacing precious-metal-based catalysts in next-generation energy devices. Existing challenges and opportunities regarding MOFderived electrocatalysts are also discussed. It is anticipated that by extending current materials design strategies to a wider range of MOF precursors for various energy-related electrocatalytic reactions, significant advances toward achieving highly efficient electrocatalysts can be made.
机译:发展可再生和清洁能源技术的关键挑战在于合理设计和合成高效且富含地球的催化剂,以用于各种电化学反应。这篇综述介绍了基于MOF前驱物/模板构建改进的电催化剂的材料设计策略,特别着重于组件操作,形态控制和结构工程。在这些策略的指导下,最近开发的MOF衍生材料在各种能量转换过程中均表现出卓越的活性,选择性和稳定性,在下一代能源设备中具有替代贵金属基催化剂的巨大潜力。还讨论了有关MOF衍生的电催化剂的现有挑战和机遇。可以预期,通过将当前的材料设计策略扩展到用于各种与能量有关的电催化反应的MOF前驱物,可以朝着实现高效电催化剂的方向取得重大进展。

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