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2D metal-organic framework-based materials for electrocatalytic, photocatalytic and thermocatalytic applications

机译:基于2 d有机框架材料electrocatalytic、光催化和thermocatalytic应用程序

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Ultrathin two-dimensional metal-organic frameworks (2D MOFs) have recently attracted extensive interest in various catalytic fields (e.g., electrocatalysis, photocatalysis, thermocatalysis) due to their ultrathin thickness, large surface area, abundant accessible unsaturated active sites and tunable surface properties. Besides tuning the intrinsic properties of pristine 2D MOFs by changing the metal nodes and organic ligands, one of the hot research trends is to develop 2D MOF hybrids and 2D MOF-derived materials with higher stability and conductivity in order to further increase their activity and durability. Here, the synthesis of 2D MOF nanosheets is briefly summarized and discussed. More attention is focused on summaries and discussions about the applications of these 2D MOFs, their hybrids and their derived materials as electrocatalysts, photocatalysts and thermocatalysts. The superior properties and catalytic performance of these 2D MOF-based catalysts compared to their 3D MOF counterparts in electrocatalysis, photocatalysis and thermocatalysis are highlighted. The enhanced activities of 2D MOFs, their hybrids and derivatives come from abundant accessible active sites, a high density of unsaturated metal nodes, ultrathin thickness, and tunable microenvironments around the MOFs. Views regarding current and future challenges in the field, and new advances in science and technology to meet these challenges, are also presented. Finally, conclusions and outlooks in this field are provided.
机译:超薄二维有机框架(2 d mof)最近吸引了广泛的兴趣不同的催化领域(例如,电催化作用,光催化,由于他们的超薄热催化)厚度、大的表面积,丰富访问不饱和活跃的站点和可调表面性质。原始的2 d财政部通过改变的性质金属节点和有机配体的热研究趋势是开发2 d MOF混合动力车和2 d MOF-derived材料具有更高的稳定性和导电性,以进一步提高他们的活动和耐久性。合成的2 d MOF nanosheets是短暂的总结和讨论。专注于总结和讨论应用程序的这些2 d mof,混合动力车和他们electrocatalysts派生的材料,催化剂和thermocatalysts。这些2 d性质和催化性能基于MOF的催化剂相比,他们的3 d MOF电催化作用、光催化作用和热催化高亮显示。2 d mof的活动,他们的混合动力车和衍生品来自丰富的访问活动网站,不饱和金属节点的高密度,超薄厚度,可调在财政部微环境。关于当前和未来的挑战领域,新的科学和技术的进步为了满足这些挑战,也提出了。最后,结论和展望被提供。

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