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dc.contributor.authorSun, Z.-
dc.contributor.authorWang, R.-
dc.contributor.authorMatulis, V.E.-
dc.contributor.authorVladimir, K.-
dc.date.accessioned2024-12-11T12:48:41Z-
dc.date.available2024-12-11T12:48:41Z-
dc.date.issued2024-
dc.identifier.citationMolecules annual. 2024 Mar 14;29(6):1286–6.ru
dc.identifier.urihttps://elib.bsu.by/handle/123456789/322904-
dc.description.abstractAs traditional fossil fuel energy development faces significant challenges, two-dimensional layered materials have become increasingly popular in various fields and have generated widespread research interest. MXene is an exceptional catalytic material that is typically integrated into functional composite materials with other substances to enhance its catalytic-reaction performance. Improving the thermal stability, electrical conductivity, and electrochemical activity, as well as enhancing the specific surface structure, can make the material an excellent catalyst for photoelectrocatalysis and energy-regeneration reactions. The article mainly outlines the structural characteristics, preparation methods, and applications of MXene in the field of catalysis. This text highlights the latest progress and performance comparison of MXene-based catalytic functional materials in various fields such as electrochemical conversion, photocatalysis, renewable energy, energy storage, and carbon capture and conversion. It also proposes future prospects and discusses the current bottlenecks and challenges in the development of MXene-based catalytic materials.ru
dc.description.sponsorship2014GJJS0501ru
dc.language.isoenru
dc.publisherMultidisciplinary Digital Publishing Institute (MDPI)ru
dc.rightsinfo:eu-repo/semantics/openAccessru
dc.subjectЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физикаru
dc.titleStructure, Synthesis, and Catalytic Performance of Emerging MXene-Based Catalystsru
dc.typearticleru
dc.rights.licenseCC BY 4.0ru
dc.identifier.DOI10.3390/molecules29061286-
dc.identifier.scopus85189070050-
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