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MXene-based electrochemical devices applied for healthcare applications

2024/01/11 by Lenka Lorencová, Lenka Lorencova, Peter Kasák +15
Engineering · Materials Science · #Advanced Memory and Neural Computing #Energy Harvesting in Wireless Networks #MXene and MAX Phase Materials

paper · pdf · doi:10.1007/s00604-023-06163-6

crossref issued 2024/01/11 · crossref published 2024/01/11 · crossref published-online 2024/01/11 · openalex publication_date 2024/01/11 · crossref created 2024/01/11 · crossref published-print 2024/02/01 · crossref deposited 2024/02/09 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/01 · crossref indexed 2026/08/01

Abstract

The initial part of the review provides an extensive overview about MXenes as novel and exciting 2D nanomaterials describing their basic physico-chemical features, methods of their synthesis, and possible interfacial modifications and techniques, which could be applied to the characterization of MXenes. Unique physico-chemical parameters of MXenes make them attractive for many practical applications, which are shortly discussed. Use of MXenes for healthcare applications is a hot scientific discipline which is discussed in detail. The article focuses on determination of low molecular weight analytes (metabolites), high molecular weight analytes (DNA/RNA and proteins), or even cells, exosomes, and viruses detected using electrochemical sensors and biosensors. Separate chapters are provided to show the potential of MXene-based devices for determination of cancer biomarkers and as wearable sensors and biosensors for monitoring of a wide range of human activities.

Citations