O/C Ratio-Driven Fluorescence Enhancement in Cellulose-Derived Carbon Quantum Dots: Mechanistic Insights into Reaction Pathways.
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ABSTRACT: By regulating cellulose molecular weight through enzymatic hydrolysis to obtain different carbon precursors, three types of carbon quantum dots (CQDs) are synthesized via hydrothermal methods: cellulose enzyme-hydrolyzed solids-based carbon quantum dots (CES-CQDs), cellulose enzyme-hydrolyzed mixtures-based carbon quantum dots (CEM-CQDs), and cellulose hydrothermal degradation products-based carbon quantum dots (CHD-CQDs). By controlling the molecular weight of the cellulose precursor, the O/C ratio of the CQDs is systematically modulated from 0.25 to 0.61, resulting in a more than five-fold increase in fluorescence intensity and an approximately seven-fold improvement in quantum yield (QY). Density functional theory (DFT) calculations indicate that high O/C ratio enhances oscillator stren
SUBMITTER: Shi Y
PROVIDER: S-EPMC12713033 | biostudies-literature | 2025 Dec
REPOSITORIES: biostudies-literature
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