Synthesis of Strongly Fluorescent Graphene Quantum Dots by Cage-Opening Buckminsterfullerene
Author(s) -
Chun Kiang Chua,
Zdeněk Sofer,
Petr Šimek,
Ondřej Jankovský,
Kateřina Klímová,
Snejana Bakardjieva,
Štěpánka Kučková,
Martin Pumera
Publication year - 2015
Publication title -
acs nano
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.554
H-Index - 382
eISSN - 1936-086X
pISSN - 1936-0851
DOI - 10.1021/nn505639q
Subject(s) - graphene , luminescence , quantum dot , materials science , raman spectroscopy , fullerene , nanomaterials , quantum yield , x ray photoelectron spectroscopy , nanotechnology , fourier transform infrared spectroscopy , photoluminescence , fluorescence , photochemistry , chemical engineering , optoelectronics , chemistry , organic chemistry , optics , physics , engineering
Graphene quantum dots is a class of graphene nanomaterials with exceptional luminescence properties. Precise dimension control of graphene quantum dots produced by chemical synthesis methods is currently difficult to achieve and usually provides a range of sizes from 3 to 25 nm. In this work, fullerene C60 is used as starting material, due to its well-defined dimension, to produce very small graphene quantum dots (∼2-3 nm). Treatment of fullerene C60 with a mixture of strong acid and chemical oxidant induced the oxidation, cage-opening, and fragmentation processes of fullerene C60. The synthesized quantum dots were characterized and supported by LDI-TOF MS, TEM, XRD, XPS, AFM, STM, FTIR, DLS, Raman spectroscopy, and luminescence analyses. The quantum dots remained fully dispersed in aqueous suspension and exhibited strong luminescence properties, with the highest intensity at 460 nm under a 340 nm excitation wavelength. Further chemical treatments with hydrazine hydrate and hydroxylamine resulted in red- and blue-shift of the luminescence, respectively.
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