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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Dependence of the Properties of 2D Nanocomposites Generated by Covalent Crosslinking of Nanosheets on the Interlayer Separation: A Combined Experimental and Theoretical Study
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Dependence of the Properties of 2D Nanocomposites Generated by Covalent Crosslinking of Nanosheets on the Interlayer Separation: A Combined Experimental and Theoretical Study

机译:纳米晶内共价交联产生的2D纳米复合材料的性质在中间层分离中产生的依赖性:一种实验与理论研究

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摘要

Covalently cross-linked heterostructures of 2D materials are a new class of materials which possess electrochemical and photochemical hydrogen evolution properties. It was of considerable interest to investigate the role of interlayer spacing in the nanocomposites involving MoS2 and graphene sheets and its control over electronic structures and catalytic properties. We have investigated this problem with emphasis on the hydrogen evolution properties of these structures by a combined experimental and theoretical study. We have linked MoS2 based nanocomposites with other 2D materials with varying interlayer spacing by changing the linker and studied their hydrogen evolution properties. The hydrogen evolution activity for these composites decreases with increasing linker length, which we can link to a decrease in magnitude of charge transfer across the layers with increasing interlayer spacing. Factors such as the nature of the sheets, interlayer distance as well as the nature of the linker provide pathways to tune the properties of covalently cross-linked 2D material rendering this new class of materials highly interesting.
机译:共价交联的2D材料异质结构是具有电化学和光化学氢进化特性的新型材料。研究中间距在涉及MOS2和石墨烯片的纳米复合材料中的角色及其对电子结构和催化性能的控制是相当令人感兴趣的。我们通过联合实验和理论研究强调了这些结构的氢进化特性。我们通过改变接头和研究其氢进化特性,具有基于其他2D材料的基于2D纳米复合材料,其具有不同的层间间隔。这些复合材料的氢进化活性随着链接器长度的增加而降低,这可以通过增加层间间距来链接到整个层上的电荷转移幅度的减小。诸如片材的性质,层间距离以及接头的性质等因素提供了调整共价交联的2D材料的性质的途径,使这类新的材料具有高度兴趣。

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