4.6 Article

Optical Properties of Tricarboxylic Acid-Derived Carbon Dots

Journal

ACS OMEGA
Volume 7, Issue 48, Pages 44093-44102

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsomega.2c05503

Keywords

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Funding

  1. Russian Science Foundation
  2. Ministry of Education and Science of Russia
  3. Russian Foundation for Basic Research
  4. [20-42-08004]
  5. [FSRG 2020-0017]
  6. [20-32-90071]

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In this study, two types of luminescent carbon dots were synthesized by hydrothermal treatment of citric acid and trans-aconitic acid, using ammonia solution as a nitrogen dopant. The synthesized carbon dots had a lateral size range of 3-15 nm and emitted intense blue photoluminescence at around 409-435 nm under 320 nm excitation. The photoluminescence quantum yield of the carbon dots ranged from 26.4% to 51%. Molecular fluorophores, particularly citrazinic acid derivatives, were found to play an important role in the structure and optical properties of the carbon dots.
Herein, we report the characterization of two types of luminescent carbon dots (CDs) synthesized by the hydrothermal treatment of citric acid and trans-aconitic acid by using ammonia solution as a nitrogen dopant. The lateral size range of nanoparticles for CDs lies in the range of 3-15 nm. The intense blue photoluminescence (PL) was emitted by the CDs at around 409-435 nm under the excitation of 320 nm. The PL quantum yield of the synthesized CDs ranged from 26.4 to 51%. Our results of the structural and optical properties of CDs imply that molecular fluorophores are an important part of the structure; in particular, the main contribution to the PL is carried by the fluorophores based on citrazinic acid derivatives, which formed during the synthesis of CDs.

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