Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/117095
Title: Effect of Cooling Rate on the Structure and Electrochemical Properties of Mn-Based Oxyfluorides with Cation-Disordered Rock-Salt Structure
Authors: Mishchenko, K. V.
Kirsanova, M. A.
Slobodyuk, A. B.
Krinitsyna, A. A.
Kosova, N. V.
Issue Date: 2022-09
Publisher: Ural Federal University
Уральский федеральный университет
Citation: Effect of Cooling Rate on the Structure and Electrochemical Properties of Mn-Based Oxyfluorides with Cation-Disordered Rock-Salt Structure / K. V. Mishchenko, M. A. Kirsanova, A. B. Slobodyuk, A. A. Krinitsyna, N. V. Kosova // Chimica Techno Acta. — 2022. — Vol. 9, No. 3: CTFM'22 Special Issue. — № 20229310.
Abstract: According to the extensive studies in the field of high-energy cathode materials for lithium-ion batteries (LIBs), Mn-based oxyfluorides Li1.2Mn0.6+0.5yNb0.2–0.5yO2–yFy with Li-excess and cation-disordered rock-salt structure capable of reversible cationic and anionic redox reactions are among the most promising candidates. In this work, a series of Mn-based oxyfluorides with y = 0.05, 0.10, 0.15 were obtained using mechanochemically assisted solid-state synthesis with different cooling rates. Transmission electron microscopy, electron paramagnetic spectroscopy (EPR) and nuclear magnetic resonance spectroscopy (NMR) show that increasing the amount of fluorine promotes local ordering in crystals with the formation of isolated clusters of Mn3+–O2––Mn4+ that interrupt lithium diffusion. The occurrence of local ordering depends on the conditions of synthesis and affects electrochemistry. It was found that more clusters are formed in slowly cooled samples than in quenched ones. The best electrochemical characteristics with reversible capacity of 150 mAh·g–1 at room temperature were demonstrated by the Li1.2Mn0.65Nb0.15O0.90F0.10 sample obtained by quenching.
Keywords: LITHIUM-ION BATTERIES
OXYFLUORIDES
DISORDERED ROCK-SALT STRUCTURE
LOCAL ORDERING
OXYGEN REDOX
MN3+/MN4+ REDOX
CYCLABILITY
URI: http://elar.urfu.ru/handle/10995/117095
Conference name: Chemical Technologies of Functional Materials
CTFM2022
VIII Международная Российско-Казахстанская научно-практическая конференция «Химические технологии функциональных материалов»
Conference date: 28.04.2022–29.04.2022
RSCI ID: https://elibrary.ru/item.asp?id=49453975
ISSN: 2411-1414
DOI: 10.15826/chimtech.2022.9.3.10
Sponsorship: This work was supported by the Russian Science Foundation (grant no. 21-73-20064).
RSCF project card: 21-73-20064
Origin: Chimica Techno Acta. 2022. Vol. 9. № 3
Appears in Collections:Chimica Techno Acta

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