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Two-dimensional materials have unique properties and their better functionality has created new paradigms in the field of sensing. Over the past decade, a new family of 2D materials known as MXenes has emerged as a promising material for numerous applications, including biosensing. Their metallic conductivity, rich surface chemistry, hydrophilicity, good biocompatibility, and high anchoring capacity for biomaterials make them an attractive candidate to detect a variety of analytes. Despite such notable properties, there are certain limitations associated with them. This review aims to present a detailed survey of MXene's synthesis; in particular, their superiority in the field of biosensing as compared to other 2D materials is addressed. Their low oxidative stability is still an open challenge, and recent investigations on MXene's oxidation are summarized. The hexagonal stacking network of MXenes acts as a distinctive matrix to load nanoparticles, and the embedded nanoparticles can bind an excess number of biomolecules (, antibodies) thereby improving biosensor performance. We will also discuss the synthesis and corresponding performance of MXenes nanocomposites with noble metal nanoparticles and magnetic nanoparticles. Furthermore, Nb and TiC-based MXenes, and TiC-MXene sandwich immunoassays are also reviewed in view of their importance. Different aspects and challenges associated with MXenes (from their synthesis to final applications) and the future perspectives described give new directions to fabricate novel biosensors.
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http://dx.doi.org/10.1039/d2ra02985e | DOI Listing |
Carbohydr Polym
November 2025
Key Lab of Guangdong Province for High Property and Functional Polymer Materials, School of Materials Science and Engineering, South China University of Technology, Guangzhou 510640, China. Electronic address:
Inspired by spider silk, polyphenolic nanodots (PTa) loaded multi-layer MXene (mMXene-PTa) through hydrogen and coordination bonds was prepared by self-polymerizing tannic acid on mMXene and used as a new crosslinker for polyvinyl alcohol (PVA). Together with starch (ST), mMXene-PTa was compounded with PVA and exfoliated to fabricate PVA/ST/mMXene-PTa nanocomposite. The phenolic hydroxyl groups in PTa formed high-density H-bonds with PVA and ST, creating an organic-inorganic dynamic crosslinking network with mMXene-PTa as nodes.
View Article and Find Full Text PDFR Soc Open Sci
September 2025
Department of Chemical Engineering, Bangladesh University of Engineering and Technology, Dhaka, Dhaka Division, Bangladesh.
Highly resilient pathogens, especially viruses and antibiotic-resistant bacteria, present formidable challenges to public health due to their ability to evade conventional treatments. Traditional microbial disinfection methods, such as chemical deactivation and physical filtration, often fail to effectively neutralize viruses, thus leading to harmful by-products. In light of these limitations, there is a growing need for innovative solutions to address viral disinfection.
View Article and Find Full Text PDFInt J Biol Macromol
September 2025
Materials Science and Nanotechnology Department, Faculty of Postgraduate Studies for Advanced Sciences (PSAS), Beni-Suef University, Beni-Suef 62511, Egypt.
Breast cancer remains a significant global health challenge, necessitating innovative therapeutic strategies. This study introduces a novel Q-MX-ZMOF@CH nanocomposite, integrating MXene with zinc-based metal-organic frameworks (ZMOF) and chitosan (CH) to targeted quercetin (Q) delivery and enhanced photothermal therapy (PTT) for breast cancer therapy. TEM imaging of Q-MX-ZMOF@CH indicated spherical morphologies with size distribution (∼60 nm).
View Article and Find Full Text PDFNanomaterials (Basel)
August 2025
Department of Electrical Measurements and Materials, Gheorghe Asachi Technical University of Iasi, Bld. Prof. Dr. Doc. D. Mangeron 67, 700050 Iasi, Romania.
In this study, composite films based on phosphorylated polyvinyl alcohol (PVA-P), TiCT MXene, and cholesteryl acetate (ChLC) were designed and characterized to explore their potential in flexible electronic applications. The incorporation of phosphate groups and ChLC enhanced intermolecular interactions, as confirmed with FTIR spectroscopy. Morphological and optical analyses revealed a transition from homogeneous to phase-separated structures with birefringent textures in ChLC-rich films.
View Article and Find Full Text PDFACS Appl Mater Interfaces
September 2025
College of Physics, Qingdao University, Qingdao 266071, China.
The pursuit of high-performance saturable absorbers (SAs) demands synergistic optimization of modulation depth, saturation intensity, and response speed─a challenge persisting in ultrafast photonics. While two-dimensional (2D) MXenes exhibit great potential as SA candidates, their intrinsic limitations, including weak surface plasmon resonance (SPR) and insufficient near-infrared nonlinear optical responses, hinder further practical laser applications. Herein, guided by the plasmonic coupling theory, we proposed a TiCT/Au nanoparticle (T/A) nanocomposite synthesized via a facile ultrasonic-assisted strategy.
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