Issue 47, 2019

Controllable fabrication of LiMnPO4 microspheres assembled by radially arranged nanoplates with highly exposed (010) facets for an enhanced electrochemical performance

Abstract

An LiMnPO4 cathode with an active crystal orientation can contribute towards its charge transfer kinetics. However, the development of a facile strategy for the manipulation of its active crystal orientation remains a great challenge. Here, we reported a simple solvothermal method to prepare LiMnPO4 hollow microspheres assembled by radially aligned nanoplates with the (010)-exposed surface and thin [010] thickness. The amount of the NH4H2PO4 additive was the key factor that controlled the ac-plane surface area of the assembled subunits of the microspheres. When applied for the cathode, the nanoplate-assembled microspheres exhibited superior rate capability compared to those of the nanoprism-assembled and thick plate-assembled microspheres, showing the discharge capacities of ∼130 mA h g−1 at 1 C and ∼81 mA h g−1 at 10 C. The improved electrochemical performance could be attributed to the advantages of the large (010) surface and the thin [010] thickness of the assembled nanoplates, which may facilitate easy access to the surface and rapid migration of lithium ions.

Graphical abstract: Controllable fabrication of LiMnPO4 microspheres assembled by radially arranged nanoplates with highly exposed (010) facets for an enhanced electrochemical performance

Supplementary files

Article information

Article type
Paper
Submitted
04 Sep 2019
Accepted
28 Oct 2019
First published
28 Oct 2019

CrystEngComm, 2019,21, 7217-7223

Controllable fabrication of LiMnPO4 microspheres assembled by radially arranged nanoplates with highly exposed (010) facets for an enhanced electrochemical performance

X. Pan, Z. Gao, L. Liu, S. Xie, H. Yuan and F. Xiao, CrystEngComm, 2019, 21, 7217 DOI: 10.1039/C9CE01387C

To request permission to reproduce material from this article, please go to the Copyright Clearance Center request page.

If you are an author contributing to an RSC publication, you do not need to request permission provided correct acknowledgement is given.

If you are the author of this article, you do not need to request permission to reproduce figures and diagrams provided correct acknowledgement is given. If you want to reproduce the whole article in a third-party publication (excluding your thesis/dissertation for which permission is not required) please go to the Copyright Clearance Center request page.

Read more about how to correctly acknowledge RSC content.

Social activity

Spotlight

Advertisements