Synthetization and Functionalization of Natural, Polymer, and Quantum‐Based Carbon Nanodots and Their Application in Biomedicine

Abstract Carbon nanodots (CNDs) are a developing branch of nanomaterials and nanoscience. This has generated much more interest in the field and class of biomedicine science by way of unique particular properties, such as high stability, great photoluminescence, easy green synthesis, and simple surface modification. Numerous applications, such as bioimaging, biosensing, and treatment, have made use of CNDs. This review describes the most recent developments in CND research and talks about major changes in the understanding of CNDs and their prospects as biomedical tools. The importance of this work lies in the ability of CNDs to overcome many of the limitations associated with traditional materials used in biomedicine, such as toxicity, poor biocompatibility, and limited functionality. Furthermore, the use of CNDs as drug carriers, imaging agents, and sensors has shown great potential in improving the diagnosis and treatment of various diseases. The novelty of this work lies in the diversity of approaches used in the synthesis and functionalization of CNDs, and the unique properties of CNDs that make them versatile tools for biomedicine. In particular, the ability to tune the size, shape, and surface chemistry of CNDs allows for the creation of tailored materials with specific biomedical applications. The review also discusses the challenges and future prospects of CNDs in biomedicine, including the need for standardization and optimization of CND synthesis, functionalization, and characterization protocols..

Medienart:

E-Artikel

Erscheinungsjahr:

2024

Erschienen:

2024

Enthalten in:

Zur Gesamtaufnahme - volume:413

Enthalten in:

Macromolecular Symposia - 413(2024), 1

Beteiligte Personen:

Aseri, Vinay [VerfasserIn]
Kumari, Poonam [VerfasserIn]
Nagar, Varad [VerfasserIn]
Godara, Vanisha [VerfasserIn]
Kumar Verma, Rohit [VerfasserIn]
Awasthi, Garima [VerfasserIn]
Awasthi, Kumud Kant [VerfasserIn]
Sankhla, Mahipal Singh [VerfasserIn]

Anmerkungen:

© 2024 Wiley‐VCH GmbH

Umfang:

13

doi:

10.1002/masy.202300052

funding:

Förderinstitution / Projekttitel:

PPN (Katalog-ID):

WLY017974496