纳米材料
光致发光
纳米技术
量子点
荧光
材料科学
碳纤维
纳米颗粒
抗菌活性
碳量子点
碳纳米管
密度泛函理论
生物相容性材料
生物成像
生物传感器
Zeta电位
生物相容性
热液循环
化学工程
化学
富勒烯
带隙
活性氧
壳聚糖
水热合成
表面电荷
荧光显微镜
环境友好型
胶体
表面改性
模板
作者
Rutuja Gumathannavar,Rohan More,Amruta Lohar,Manoj Kadam,Mandar M. Shirolkar,Yogesh Jadhav,Santosh Koratkar
标识
DOI:10.1038/s41598-025-31920-3
摘要
Environmentally friendly and biocompatible nanomaterials are essential for biomedical applications demanding long-term safety, stability, and functional performance. In this study, we present a simple hydrothermal synthesis of chitosan-derived fluorescent carbon quantum dots (CQDs), utilizing chitosan as a biodegradable carbon precursor. The synthesized CQDs displayed uniform spherical morphology (~ 3 ± 1 nm), a positive surface charge (+ 12.6 mV), and strong cyan-blue photoluminescence (λem ≈ 473 nm, PLQY ≈ 17.5%) with excitation-dependent emission. Their structure and optical properties were characterized using TEM, XRD, FTIR, UV–Vis, PL, DLS, and cyclic voltammetry. Density functional theory (DFT) simulations supported experimental data, showing stable nanocluster formation through chitosan–acetic acid interactions and predicting a band gap of ≈ 3.41 eV, consistent with the experimental 3.45 eV. Nitrogen atoms were identified as major contributors to optical transitions. Biological studies revealed dose-dependent cytocompatibility in Vero cells, strong antioxidant activity (DPPH assay), and antibacterial efficacy against E. coli and S. aureus via reactive oxygen species generation and electrostatic interactions. Fluorescence microscopy confirmed efficient cellular uptake and cytoplasmic distribution. Overall, this integrated experimental–theoretical approach highlights the CQDs’ potential for sustainable applications in bioimaging, drug delivery, and theranostics.
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