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MXene Surface Architectonics: Bridging Molecular Design to Multifunctional Applications
by
Wang, Jiale
, Huang, Wenxuan
, Lai, Wei
, Guo, Mengdi
in
2D materials
/ Chemical bonds
/ Electric properties
/ Electrical conductivity
/ Energy storage
/ Environmental monitoring
/ Enzymes
/ Etching
/ Fluorides
/ ligand grafting
/ Ligands
/ Methods
/ MXene
/ Nuclear energy
/ nucleophilic substitution
/ Physicochemical properties
/ Review
/ Surface chemistry
/ surface modification
/ Technology application
2025
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MXene Surface Architectonics: Bridging Molecular Design to Multifunctional Applications
by
Wang, Jiale
, Huang, Wenxuan
, Lai, Wei
, Guo, Mengdi
in
2D materials
/ Chemical bonds
/ Electric properties
/ Electrical conductivity
/ Energy storage
/ Environmental monitoring
/ Enzymes
/ Etching
/ Fluorides
/ ligand grafting
/ Ligands
/ Methods
/ MXene
/ Nuclear energy
/ nucleophilic substitution
/ Physicochemical properties
/ Review
/ Surface chemistry
/ surface modification
/ Technology application
2025
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Do you wish to request the book?
MXene Surface Architectonics: Bridging Molecular Design to Multifunctional Applications
by
Wang, Jiale
, Huang, Wenxuan
, Lai, Wei
, Guo, Mengdi
in
2D materials
/ Chemical bonds
/ Electric properties
/ Electrical conductivity
/ Energy storage
/ Environmental monitoring
/ Enzymes
/ Etching
/ Fluorides
/ ligand grafting
/ Ligands
/ Methods
/ MXene
/ Nuclear energy
/ nucleophilic substitution
/ Physicochemical properties
/ Review
/ Surface chemistry
/ surface modification
/ Technology application
2025
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MXene Surface Architectonics: Bridging Molecular Design to Multifunctional Applications
Journal Article
MXene Surface Architectonics: Bridging Molecular Design to Multifunctional Applications
2025
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Overview
This review delves into the surface modification of MXenes, underscoring its pivotal role in improving their diverse physicochemical properties, including tailor MXenes’ electrical conductivity, mechanical strength, and wettability. It outlines various surface modification strategies and principles, highlighting their contributions to performance enhancements across diverse applications, including energy storage and conversion, materials mechanics, electronic devices, biomedical sciences, environmental monitoring, and fire-resistant materials. While significant advancements have been made, the review also identifies challenges and future research directions, emphasizing the continued development of innovative materials, methods, and applications to further expand MXenes’ utility and potential.
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