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首页> 外文期刊>Angewandte Chemie >Fullerenes as Key Components for Low-Dimensional (Photo)electrocatalytic Nanohybrid Materials
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Fullerenes as Key Components for Low-Dimensional (Photo)electrocatalytic Nanohybrid Materials

机译:富勒烯作为低维(照片)电催化纳米植物材料的关键部件

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摘要

An emerging class of heterostructures with unprecedented (photo)electrocatalytic behavior, involving the combination of fullerenes and low-dimensional (LD) nanohybrids, is currently expanding the field of energy materials. The unique physical and chemical properties of fullerenes have offered new opportunities to tailor both the electronic structures and the catalytic activities of the nanohybrid structures. Here, we comprehensively review the synthetic approaches to prepare fullerene-based hybrids with LD (0D, 1D, and 2D) materials in addition to their resulting structural and catalytic properties. Recent advances in the design of fullerene-based LD nanomaterials for (photo)electrocatalytic applications are emphasized. The fundamental relationship between the electronic structures and the catalytic functions of the heterostructures, including the role of the fullerenes, is addressed to provide an in-depth understanding of these emerging materials at the molecular level.
机译:一类新兴的异质结构具有前所未有的(光)电催化行为,涉及富勒烯和低维(LD)纳米杂化物的结合,目前正在扩展能源材料领域。富勒烯独特的物理和化学性质为调整纳米杂化结构的电子结构和催化活性提供了新的机会。在这里,我们全面回顾了制备含LD(0D、1D和2D)材料的富勒烯基杂化物的合成方法,以及由此产生的结构和催化性能。重点介绍了用于(光)电催化应用的富勒烯基LD纳米材料设计的最新进展。电子结构和异质结构的催化功能之间的基本关系,包括富勒烯的作用,将在分子水平上提供对这些新兴材料的深入理解。

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