Detail View

A review of biocompatible polymer-functionalized two-dimensional materials: Emerging contenders for biosensors and bioelectronics applications
Citations

WEB OF SCIENCE

Citations

SCOPUS

Metadata Downloads

Title
A review of biocompatible polymer-functionalized two-dimensional materials: Emerging contenders for biosensors and bioelectronics applications
Issued Date
2024-08
Citation
Zahra, Tahreem. (2024-08). A review of biocompatible polymer-functionalized two-dimensional materials: Emerging contenders for biosensors and bioelectronics applications. Analytica Chimica Acta, 1316. doi: 10.1016/j.aca.2024.342880
Type
Article
Author Keywords
BioelectronicsBiosensors2D materialsPolymer-functionalizationBiocompatible
Keywords
REDUCED GRAPHENE OXIDETRANSITION-METAL DICHALCOGENIDESGRAPHITIC CARBON NITRIDEIN-SITU SYNTHESISBLACK PHOSPHORUSELECTROCHEMICAL SENSORHIGHLY EFFICIENTELECTROCHEMILUMINESCENCE BIOSENSORBIOMEDICAL APPLICATIONSSENSITIVE DETECTION
ISSN
0003-2670
Abstract
Bioelectronics, a field pivotal in monitoring and stimulating biological processes, demands innovative nanomaterials as detection platforms. Two-dimensional (2D) materials, with their thin structures and exceptional physicochemical properties, have emerged as critical substances in this research. However, these materials face challenges in biomedical applications due to issues related to their biological compatibility, adaptability, functionality, and nano-bio surface characteristics. This review examines surface modifications using covalent and non-covalent-based polymer-functionalization strategies to overcome these limitations by enhancing the biological compatibility, adaptability, and functionality of 2D nanomaterials. These surface modifications aim to create stable and long-lasting therapeutic effects, significantly paving the way for the practical application of polymer-functionalized 2D materials in biosensors and bioelectronics. The review paper critically summarizes the surface functionalization of 2D nanomaterials with biocompatible polymers, including g-C3N4, graphene family, MXene, BP, MOF, and TMDCs, highlighting their current state, physicochemical structures, synthesis methods, material characteristics, and applications in biosensors and bioelectronics. The paper concludes with a discussion of prospects, challenges, and numerous opportunities in the evolving field of bioelectronics. © 2024
URI
http://hdl.handle.net/20.500.11750/57147
DOI
10.1016/j.aca.2024.342880
Publisher
Elsevier
Show Full Item Record

File Downloads

공유

qrcode
공유하기

Total Views & Downloads