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A Mini Review on the Excellent Nanostructures in Electrochemical Energy Storage and Conversion

期刊

NANO
卷 17, 期 1, 页码 -

出版社

WORLD SCIENTIFIC PUBL CO PTE LTD
DOI: 10.1142/S179329202230002X

关键词

Nanostructure; preparation; application; electrochemical; energy storage and conversion

资金

  1. Qilu University of Technology (Shandong Academy of Sciences)
  2. Youth Innovation and Technology Support Program of Higher Education in Shandong [2019KJA015]

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This review summarizes the preparations and applications of excellent nanostructures based on the authors' previous works, focusing on electrochemical energy storage and conversion. Different shapes of nanostructures are introduced, and simple and controllable design methods for functional materials with excellent nanostructures are demonstrated.
This mini review summarized the preparations and applications of excellent nanostructures based on the authors' previous works, focusing on the electrochemical energy storage and conversion. It mainly includes rod-/strip-shaped nanostructures, spherical nanostructures, flower-shaped nanostructures, core-shell nanostructures, and networked nanostructures, aiming to demonstrate the simple and controllable design methods for functional materials with excellent nanostructures. Electrochemical energy storage and conversion have been in a significant position for meeting the increasing demand for the development of the society. The design and preparation of high-performance functional semiconductor materials have played a critical role in the development of electrochemical energy storage and conversion. In this context, the nanostructures in functional semiconductor materials provide an alternative route by virtue of their unique and promising nanoscale. Controlling the geometrical parameters of nanostructures and thus forming expected nanomaterials is very important to the investigation and applications of functional semiconductor materials. In this review, we summarized the preparation and applications of the nanostructures for electrochemical energy storage and conversion. It demonstrates simple and controllable design methods for functional materials with ideal nanostructures.

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