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Atomically thin non-layered nanomaterials for energy storage and conversion

journal contribution
posted on 2024-11-16, 04:03 authored by Yuhai Dou, Lei Zhang, Xun XuXun Xu, Ziqi Sun, Ting Liao, Shi DouShi Dou
After the discovery of graphene, two-dimensional nanomaterials with atomic thickness and large lateral size have attracted tremendous research interest due to their high specific surface areas, exotic electronic structures, and fascinating physical and chemical properties. Even though recent studies are mainly focused on atomically thin nanomaterials with layered structures due to their easy preparation and characterization, the investigation of non-layered nanomaterials is also proceeding as new types of ultrathin nanostructures are constantly being created, such as metals, metal oxides, metal chalcogenides, some transition metal dichalcogenides, and perovskites. Here in this review, we comprehensively summarize the preparation methods for atomically thin non-layered nanomaterials, study their exotic electronic structures, introduce electronic-structure manipulation strategies, and provide an overview of their applications in energy storage and conversion, with particular emphasis on lithium-ion batteries, sodium-ion batteries, catalysis of hydrogen evolution, oxygen evolution, CO 2 reduction, CO oxidation reactions, etc. The central theme of this review is to provide correlation among the materials synthesis, structural and electronic properties, and their major applications. Finally, based on current research progress, we propose future directions yet to be explored for enhanced properties and novel functionalities in practical applications.

Funding

Multifunctional 2D materials for sustainable energy applications

Australian Research Council

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Two-dimensional nanoporous structured high performance gas evolution electrocatalysts

Australian Research Council

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History

Citation

Dou, Y., Zhang, L., Xu, X., Sun, Z., Liao, T. & Dou, S. Xue. (2017). Atomically thin non-layered nanomaterials for energy storage and conversion. Chemical Society Reviews, 46 (23), 7338-7373.

Journal title

Chemical Society Reviews

Volume

46

Issue

23

Pagination

7338-7373

Language

English

RIS ID

117786

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