Skip to content
Review Open access

Tailoring MXene Surface Chemistry: Strategies, Mechanisms, and Functional Applications.

Aug 2026 · Small · Vol 22, pp. e74769 · 0 citations · 172 references
Medicine

Abstract

MXenes, a burgeoning family of two-dimensional transition metal carbides, nitrides, and carbonitrides, have garnered significant attention due to their metallic conductivity, hydrophilicity, and surface-rich chemistry, offering immense potential across electrochemical energy storage, catalysis, and advanced sensing. Achieving precise control over their surface chemistry is pivotal for tailoring physicochemical properties and unlocking application-specific functionalities. This review comprehensively summarizes recent progress in MXene chemistry modulation via advanced synthesis protocols and post-synthetic modifications, with an emphasis on surface terminations and interlayer engineering. We discuss the influence of etching conditions, delamination strategies, and intercalation chemistries on the structural and electronic characteristics of MXenes. Moreover, mechanistic insights into ion intercalation and surface functional group evolution are critically analyzed to guide rational design strategies. Key challenges-including batch-to-batch variability, limited scalability, and insufficient mechanistic understanding of surface transformations-are also addressed. This review provides a forward-looking perspective on engineering MXenes with tunable interfaces for next-generation applications in energy, catalysis, and flexible electronic skin systems.

Read PDF

Similar papers

Review Sep 2026

Main-group-element-based surface functionalization of MXenes toward advanced tribological applications

MXenes are one of the most versatile families of two-dimensional transition-metal carbides and nitrides due to their metallic conductivity, tunable surface chemistry and excellent mechanical properties. Nevertheless, the practical application of MXenes in lubrication, coatings, energy storage and sensing technologies a...

A. Ojha, Sanjeev Kumar Tiwari, D. Tiwary · 0 citations
Review Sep 2026

Surface Functional Group Engineering of MXenes: Mechanisms, Tailoring Strategies, and Performance‐Oriented Applications

MXenes, as an emerging 2D material, hold considerable energy storage potential. However, the intrinsic stochastic distribution and thermodynamic metastability of their surface functional groups impair key electrochemical properties, compromising their cyclability and rate capability. Regulating the type, density, and s...

Min Yang, Zian Yuan, Yao-Yu Wang et al. · 0 citations
Review Aug 2026

MXenes From Fundamentals to Market: Structural Characteristics, Emerging Synthesis Routes, Applications, and AI‐Accelerated Innovations

MXenes, a rapidly growing family of two‐dimensional transition‐metal carbides, nitrides, and carbonitrides have attracted significant attention because of their layered structures, metallic conductivity, and tunable surface chemistry. These unique characteristics allow precise control of their physical, and chemical pr...

Vaibhav Jain, Bhavya Jain, Ashish Kalkal et al. · 0 citations
Open access Sep 2026

Designer surface chemistry of two-dimensional MXenes

Controlling the surface chemical composition of two-dimensional (2D) transition-metal carbides and nitrides (MXenes) is essential for tailoring their properties. Since 2020, a rapidly growing, community-wide understanding of MXene surface chemistry has transformed the field from handling mixed terminations (–O, –...

Brian C. Wyatt, Seon Joon Kim, B. Anasori · 0 citations
Review Sep 2026

Transition Metal Carbide and Nitride Composite Nanoarchitectonics for Bio-, Electro-, and Photo-Based Catalytic Applications

MXenes have emerged as a versatile two-dimensional platform in advanced catalytic systems because of their tunable surface chemistry, metallic conductivity, and structural diversity. Nevertheless, severe agglomeration and limited colloidal stability may undermine their catalytic performance. Integrating MXenes with l...

Ying-Tong Ye, P. Kalakonda, Krishnakumar Balu et al. · 0 citations
Review Sep 2026

Harnessing Photoinduced Azobenzene Switching for Rational Design of Smart Nanoporous Metal−Organic Frameworks

Azobenzene-functionalized metal−organic frameworks (Azo-MOFs) have emerged as versatile nanoporous platforms for constructing light-responsive materials with tunable physicochemical properties. This review critically examines their molecular design, synthesis, photo-switching mechanisms, characterization, and functio...

Si-Qi Liu, Juan Chen, Hong-Yuan Wang et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.