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Size fractionation of two-dimensional sub-nanometer thin manganese dioxide crystals towards superior urea electrocatalytic conversion

机译:二维亚纳米薄二氧化锰晶体的尺寸分级朝向优异的尿素电催化转化

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摘要

A universal technique has been proposed to sort two-dimensional (2D) sub-nanometer thin crystals (manganese dioxide MnO2 and molybdenum disulfide MoS₂ ) according to their lateral dimensions. This technique is based on tuning the zeta potential of their aqueous dispersions which induces the selective sedimentation of large-sized 2D crystals and leaves the small-sized counterparts in suspension. The electrocatalytic properties of as-obtained 2D ultrathin crystals are strongly dependent on their lateral size. As a proof-of-concept study, the small-sized MnO₂ nanocrystals were tested as the electrocatalysts for the urea-oxidation reaction (UOR), which showed outstanding performance in both half reaction and full electrolytic cell. A mechanism study reveals the enhanced performance is associated with the remarkable structural properties of MnO₂ including ultrathin (ca. 0.95 nm), laterally small-sized (50-200 nm), and highly exposed active centers.
机译:已经提出了一种通用技术,可以根据其横向尺寸对二维(2D)亚纳米薄晶体(二氧化锰MnO2和二硫化钼MoS 2)进行分类。该技术基于调节其水分散体的ζ电势,该ζ电势引起大尺寸2D晶体的选择性沉淀,并使小尺寸对应物悬浮。所获得的2D超薄晶体的电催化性能在很大程度上取决于其横向尺寸。作为概念验证研究,测试了小尺寸的MnO 2纳米晶体作为尿素氧化反应(UOR)的电催化剂,它在半反应和全电解池中均表现出出色的性能。机理研究表明,增强的性能与MnO 2的卓越结构特性有关,包括超薄(约0.95 nm),横向小尺寸(50-200 nm)和高度暴露的活性中心。

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