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Environmental Insights and Sustainability Opportunities for Scaled‐Up MXene Production Without Etching

Source: PubMed Central Open Access, NCBI / U.S. National Library of Medicine

Advanced ScienceLast synced 7/23/2026Status: syncedPMID: 42037197 pmidDOI: 10.1002/advs.75376

ABSTRACT MXenes are a class of high‐performance materials receiving significant attention in areas such as energy and sensors. However, their conventional synthesis via defective etching raises environmental concerns due to the heavy use of hazardous chemicals. Herein, the environmental impacts of emerging MXene synthesis pathways are systematically evaluated from lab to process scales. Transforming away from solvent‐based etching could enable a 94% reduction in carbon emissions with improved reactant efficiency and recovery. Further, process optimization opportunities are identified for gas‐phase and molten salt synthesis pathways to achieving 67% to 85% reduction in human health, ecosystems, and natural resource impacts. Future research should target developing processes with dispersant to product ratio reaching 5.3 L/kg, which can reduce the carbon emission of MXene production down to 27 kg CO‐eq/kg, making it one of the leading advanced nanomaterials. Through a systematic and comprehensive analysis of the environmental impacts for the emerging MXene synthesis pathways, this study presents process transformation and optimization opportunities for low‐carbon MXene production from laboratory to industrial scales. advs75376-abs-0001 graphical

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