纳米材料
荧光
纳米技术
碳纤维
碳化
Mercury(编程语言)
检出限
材料科学
纳米颗粒
碳纳米管
水溶液中的金属离子
化学
离子
表面改性
生物成像
纳米结构
纳米复合材料
金属
天然产物
作者
Neeta Karjule,Rohit Singh,Vivek Singh Baghel,Biplab Sarkar,Yogesh P. Bharitkar,Avisek Mahapa,Ravindra S. Phatake
标识
DOI:10.1021/acsanm.5c05713
摘要
The sustainable synthesis of multifunctional fluorescent nanomaterials from renewable molecular sources represents a promising direction in green nanoscience. Herein, we report a molecularly guided green synthesis of rohitukine-derived carbon dots (R-CDs) using the bioactive chromone alkaloid rohitukine as a structurally defined precursor, yielding ultrasmall carbonaceous nanostructures with intense and stable fluorescence. The rigid heterocyclic framework and intrinsic oxygen- and nitrogen-rich functionalities of rohitukine enable controlled carbonization and surface passivation, resulting in highly emissive, water-soluble carbon dots with encoded surface chemistry. The R-CDs exhibit reversible pH-dependent fluorescence over a wide range, enabling reliable pH sensing, and show selective mercury ion detection with a linear response from 5–25 μM and a detection limit of 0.30 μM, with minimal interference from competing metal ions. Owing to their excellent photostability and biocompatibility, the R-CDs display efficient cellular uptake and bright live-cell imaging performance, and further function as fluorescent inks for invisible-to-visible anticounterfeiting applications. This work establishes rohitukine as a drug-inspired natural product precursor for the sustainable design of multifunctional carbon nanomaterials with integrated environmental sensing, bioimaging, and security-related functionalities.
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