Literature DB >> 35145703

Structural and chemical evolution in layered oxide cathodes of lithium-ion batteries revealed by synchrotron techniques.

Guannan Qian1, Junyang Wang1, Hong Li2, Zi-Feng Ma3, Piero Pianetta1, Linsen Li3, Xiqian Yu2, Yijin Liu1.   

Abstract

Rechargeable battery technologies have revolutionized electronics, transportation and grid energy storage. Many materials are being researched for battery applications, with layered transition metal oxides (LTMO) the dominating cathode candidate with remarkable electrochemical performance. Yet, daunting challenges persist in the quest for further battery developments targeting lower cost, longer lifespan, improved energy density and enhanced safety. This is, in part, because of the intrinsic complexity of real-world batteries, featuring sophisticated interplay among microstructural, compositional and chemical heterogeneities, which has motivated tremendous research efforts using state-of-the-art analytical techniques. In this research field, synchrotron techniques have been identified as a suite of effective methods for advanced battery characterization in a non-destructive manner with sensitivities to the lattice, electronic and morphological structures. This article provides a holistic overview of cutting-edge developments in synchrotron-based research on LTMO battery cathode materials. We discuss the complexity and evolution of LTMO's material properties upon battery operation and review recent synchrotron-based research works that address the frontier challenges and provide novel insights in this field. Finally, we formulate a perspective on future directions of synchrotron-based battery research, involving next-generation X-ray facilities and advanced computational developments.
© The Author(s) 2021. Published by Oxford University Press on behalf of China Science Publishing & Media Ltd.

Entities:  

Keywords:  bulk; electro-chemo-mechanical interplay; layered battery cathode; surface; synchrotron

Year:  2021        PMID: 35145703      PMCID: PMC8824737          DOI: 10.1093/nsr/nwab146

Source DB:  PubMed          Journal:  Natl Sci Rev        ISSN: 2053-714X            Impact factor:   17.275


  37 in total

1.  High-energy cathode material for long-life and safe lithium batteries.

Authors:  Yang-Kook Sun; Seung-Taek Myung; Byung-Chun Park; Jai Prakash; Ilias Belharouak; Khalil Amine
Journal:  Nat Mater       Date:  2009-03-22       Impact factor: 43.841

Review 2.  Reviving lithium cobalt oxide-based lithium secondary batteries-toward a higher energy density.

Authors:  Longlong Wang; Bingbing Chen; Jun Ma; Guanglei Cui; Liquan Chen
Journal:  Chem Soc Rev       Date:  2018-08-28       Impact factor: 54.564

3.  Charge-compensation in 3d-transition-metal-oxide intercalation cathodes through the generation of localized electron holes on oxygen.

Authors:  Kun Luo; Matthew R Roberts; Rong Hao; Niccoló Guerrini; David M Pickup; Yi-Sheng Liu; Kristina Edström; Jinghua Guo; Alan V Chadwick; Laurent C Duda; Peter G Bruce
Journal:  Nat Chem       Date:  2016-03-21       Impact factor: 24.427

4.  Probing the Complexities of Structural Changes in Layered Oxide Cathode Materials for Li-Ion Batteries during Fast Charge-Discharge Cycling and Heating.

Authors:  Enyuan Hu; Xuelong Wang; Xiqian Yu; Xiao-Qing Yang
Journal:  Acc Chem Res       Date:  2018-01-19       Impact factor: 22.384

Review 5.  Bridging Structural Inhomogeneity to Functionality: Pair Distribution Function Methods for Functional Materials Development.

Authors:  He Zhu; Yalan Huang; Jincan Ren; Binghao Zhang; Yubin Ke; Alex K-Y Jen; Qiang Zhang; Xun-Li Wang; Qi Liu
Journal:  Adv Sci (Weinh)       Date:  2021-01-22       Impact factor: 16.806

6.  Tuning charge-discharge induced unit cell breathing in layer-structured cathode materials for lithium-ion batteries.

Authors:  Yong-Ning Zhou; Jun Ma; Enyuan Hu; Xiqian Yu; Lin Gu; Kyung-Wan Nam; Liquan Chen; Zhaoxiang Wang; Xiao-Qing Yang
Journal:  Nat Commun       Date:  2014-11-18       Impact factor: 14.919

7.  Reversible planar gliding and microcracking in a single-crystalline Ni-rich cathode.

Authors:  Yujing Bi; Jinhui Tao; Yuqin Wu; Linze Li; Yaobin Xu; Enyuan Hu; Bingbin Wu; Jiangtao Hu; Chongmin Wang; Ji-Guang Zhang; Yue Qi; Jie Xiao
Journal:  Science       Date:  2020-12-11       Impact factor: 47.728

8.  Superstructure control of first-cycle voltage hysteresis in oxygen-redox cathodes.

Authors:  Urmimala Maitra; Miguel A Pérez-Osorio; Robert A House; Juan G Lozano; Liyu Jin; James W Somerville; Laurent C Duda; Abhishek Nag; Andrew Walters; Ke-Jin Zhou; Matthew R Roberts; Peter G Bruce
Journal:  Nature       Date:  2019-12-09       Impact factor: 69.504

9.  Distinct charge dynamics in battery electrodes revealed by in situ and operando soft X-ray spectroscopy.

Authors:  Xiaosong Liu; Dongdong Wang; Gao Liu; Venkat Srinivasan; Zhi Liu; Zahid Hussain; Wanli Yang
Journal:  Nat Commun       Date:  2013       Impact factor: 14.919

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