Carbon Dots: From Synthesis to Unraveling the Fluorescence Mechanism

Author:

Alafeef Maha12345,Srivastava Indrajit12345,Aditya Teresa23456,Pan Dipanjan12345ORCID

Affiliation:

1. Bioengineering Department The University of Illinois at Urbana‐Champaign Urbana IL 61801 USA

2. Department of Nuclear Engineering Pennsylvania State University State College PA 16801 USA

3. Materials Science and Engineering Pennsylvania State University State College PA 16801 USA

4. Biomedical Engineering Department Pennsylvania State University State College PA 16801 USA

5. Biomedical Engineering Department Jordan University of Science and Technology Irbid 22110 Jordan

6. Huck Institute of Life Sciences Pennsylvania State University State College PA 16801 USA

Abstract

AbstractCarbon dots (CDs) being a new type of carbon‐based nanomaterial have attracted intensive interest from researchers owing to their excellent biophysical properties. CDs are a class of fluorescent carbon nanomaterials that have emerged as a promising alternative to traditional quantum dots and organic dyes in applications including bioimaging, sensing, and optoelectronics. CDs possess unique optical properties, such as tunable emission, facile synthesis, and low toxicity, making them attractive for many applications in biology, medicine, and environmental areas. The synthesis of CDs is achievable by a variety of methods, including bottom‐up and top‐down approaches, involving the use of different carbon sources and surface functionalization strategies. However, understanding the fluorescence mechanism of CDs remains a challenge. Various mechanistic models have been proposed to explain their origin of luminescence. This review summarizes the recent developments in the synthesis and functionalization of CDs and provides an overview of the current understanding of the fluorescence mechanism.

Funder

National Science Foundation

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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