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Transition Metal Dichalcogenides (TMDC)-Based Nanozymes for Biosensing and Therapeutic Applications
by
Nayak, Chinmay
, Hooshmand, Sara
, Presutti, Dario
, Agarwal, Tarun
, Zarepour, Atefeh
, Costantini, Marco
, Maiti, Tapas Kumar
, Ghomi, Matineh
, Behera, Birendra
, Celikkin, Nehar
, Zarrabi, Ali
in
Chalcogenides
/ Chemical vapor deposition
/ Enzymes
/ Metal oxides
/ Methods
/ Nanomaterials
/ Nanotechnology
/ Quantum dots
/ Review
/ Solvents
/ Transition metal compounds
2022
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Transition Metal Dichalcogenides (TMDC)-Based Nanozymes for Biosensing and Therapeutic Applications
by
Nayak, Chinmay
, Hooshmand, Sara
, Presutti, Dario
, Agarwal, Tarun
, Zarepour, Atefeh
, Costantini, Marco
, Maiti, Tapas Kumar
, Ghomi, Matineh
, Behera, Birendra
, Celikkin, Nehar
, Zarrabi, Ali
in
Chalcogenides
/ Chemical vapor deposition
/ Enzymes
/ Metal oxides
/ Methods
/ Nanomaterials
/ Nanotechnology
/ Quantum dots
/ Review
/ Solvents
/ Transition metal compounds
2022
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Transition Metal Dichalcogenides (TMDC)-Based Nanozymes for Biosensing and Therapeutic Applications
by
Nayak, Chinmay
, Hooshmand, Sara
, Presutti, Dario
, Agarwal, Tarun
, Zarepour, Atefeh
, Costantini, Marco
, Maiti, Tapas Kumar
, Ghomi, Matineh
, Behera, Birendra
, Celikkin, Nehar
, Zarrabi, Ali
in
Chalcogenides
/ Chemical vapor deposition
/ Enzymes
/ Metal oxides
/ Methods
/ Nanomaterials
/ Nanotechnology
/ Quantum dots
/ Review
/ Solvents
/ Transition metal compounds
2022
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Transition Metal Dichalcogenides (TMDC)-Based Nanozymes for Biosensing and Therapeutic Applications
Journal Article
Transition Metal Dichalcogenides (TMDC)-Based Nanozymes for Biosensing and Therapeutic Applications
2022
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Overview
Nanozymes, a type of nanomaterial with enzyme-like properties, are a promising alternative to natural enzymes. In particular, transition metal dichalcogenides (TMDCs, with the general formula MX2, where M represents a transition metal and X is a chalcogen element)-based nanozymes have demonstrated exceptional potential in the healthcare and diagnostic sectors. TMDCs have different enzymatic properties due to their unique nano-architecture, high surface area, and semiconducting properties with tunable band gaps. Furthermore, the compatibility of TMDCs with various chemical or physical modification strategies provide a simple and scalable way to engineer and control their enzymatic activity. Here, we discuss recent advances made with TMDC-based nanozymes for biosensing and therapeutic applications. We also discuss their synthesis strategies, various enzymatic properties, current challenges, and the outlook for future developments in this field.
Publisher
MDPI AG,MDPI
Subject
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