期刊
NEW JOURNAL OF CHEMISTRY
卷 44, 期 25, 页码 10662-10670出版社
ROYAL SOC CHEMISTRY
DOI: 10.1039/d0nj01804j
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资金
- Department of Science and Technology (DST)
- Ministry of Science and Technology (DST/SERB) [FTP/PS-128/2012]
- Nano Mission Council, Department of Science and Technology [SR/NM/NS-4151069/2012]
We report on the photo-to-thermal conversion characteristics of fluorescence-quenched solid-state carbon quantum dots (CQDs) preparedviathe microwave treatment of citric acid and urea. With a fluorescence quantum yield of similar to 6.98% in the aqueous dispersed form, the CQDs exhibit no photoluminescence upon solvent removal. Thus, clearly, the photoexcited electrons in the CQDs in the solid state lack a radiative de-excitation pathway, thus causing them to lose their energy non-radiatively to relax back to the ground state. Upon irradiation from a coherent, continuous-wave, monochromatic (450 nm) light source, the temperature generated by similar to 0.07 mg of the solid-state carbon quantum dot sample was determined to be similar to 137 degrees C corresponding to an intensity of similar to 21.2 W cm(-2). Furthermore, its light-to-heat transduction activity was utilized for the photothermal degradation of a widely used polymer, poly(propylene carbonate), resulting in the formation of its monomer, propylene carbonate.
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