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Title
Paving the path to the future of carbogenic nanodots
Authors
Keywords
-
Journal
Nature Communications
Volume 10, Issue 1, Pages -
Publisher
Springer Science and Business Media LLC
Online
2019-06-03
DOI
10.1038/s41467-019-10394-8
References
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Related references
Note: Only part of the references are listed.- Raman spectroscopy of graphene-based materials and its applications in related devices
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- Supramolecular interactions via hydrogen bonding contributing to citric-acid derived carbon dots with high quantum yield and sensitive photoluminescence
- (2017) Wenkai Zhang et al. RSC Advances
- Shedding light on the effective fluorophore structure of high fluorescence quantum yield carbon nanodots
- (2017) W. Wang et al. RSC Advances
- Structure and photoluminescence evolution of nanodots during pyrolysis of citric acid: from molecular nanoclusters to carbogenic nanoparticles
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- Beyond bottom-up carbon nanodots: Citric-acid derived organic molecules
- (2016) Shoujun Zhu et al. Nano Today
- Carbon dots with high fluorescence quantum yield: the fluorescence originates from organic fluorophores
- (2016) Lei Shi et al. Nanoscale
- The Electronic Structure of Amorphous Carbon Nanodots
- (2015) Johannes T. Margraf et al. JOURNAL OF PHYSICAL CHEMISTRY B
- Investigation from chemical structure to photoluminescent mechanism: a type of carbon dots from the pyrolysis of citric acid and an amine
- (2015) Yubin Song et al. Journal of Materials Chemistry C
- Carbon-Based Dots Co-doped with Nitrogen and Sulfur for High Quantum Yield and Excitation-Independent Emission
- (2013) Yongqiang Dong et al. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
- Temperature-dependent photoluminescence from chemically and thermally reduced graphene oxide
- (2011) Tran Viet Cuong et al. APPLIED PHYSICS LETTERS
- Formation Mechanism of Carbogenic Nanoparticles with Dual Photoluminescence Emission
- (2011) Marta J. Krysmann et al. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
- Temperature dependence of graphene oxide reduced by hydrazine hydrate
- (2010) Peng-Gang Ren et al. NANOTECHNOLOGY
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