Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/118583
Title: Mo₂CTₓ supported ruthenium nanoparticles as efficient cathode catalyst for Li-CO₂ battery with high capacity and long cycle life
Authors: Gong, X 
Li, H 
Fan, K 
Lin, Z 
Zhang, J 
Huang, H 
Issue Date: Jun-2025
Source: Chemical research in Chinese universities, June 2025, v. 41, no. 3, p. 511-518
Abstract: Li-CO₂ batteries have garnered considerable attention due to their high energy density and their ability to utilize CO₂ resources. However, the generation of insulating discharge product Li₂CO₃ severely weakens its cyclability, which places high demands on the cathode catalyst in Li-CO₂ batteries. This study focuses on the development of Ru nanoparticles modified Mo₂CTₓ as the cathode for Li-CO₂ batteries, which is integrated with a high surface area, abundant active sites, and enhanced conductivity. As a result, the Ru@Mo₂CTₓ cathode achieves a remarkable discharge capacity of 20995 mA·h·g−1 and a long cycle life of 1750 h. Additionally, density functional theory calculations provide further insights into the enhancement in absorptivity with Ru introduced onto Mo₂CTₓ. This research paves the way for manipulating the catalytic activity of Mo₂CTₓ and reducing the amount of usage of Ru in Li-CO₂ batteries.
Keywords: Catalyst
Long cycle life
MXene
Ru nanoparticle
Publisher: Higher Education Press
Journal: Chemical research in Chinese universities 
ISSN: 1005-9040
DOI: 10.1007/s40242-025-5032-x
Appears in Collections:Journal/Magazine Article

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