Luminescent S-doped carbon dots: an emergent architecture for multimodal applications

被引:305
作者
Chandra, Sourov [1 ,2 ,3 ]
Patra, Prasun [3 ]
Pathan, Shaheen H. [4 ]
Roy, Shuvrodeb [3 ]
Mitra, Shouvik [3 ]
Layek, Animesh [5 ]
Bhar, Radhaballabh [2 ]
Pramanik, Panchanan [1 ]
Goswami, Arunava [3 ]
机构
[1] Indian Inst Technol Kharagpur, Dept Chem, Nanomat Lab, Kharagpur 721302, W Bengal, India
[2] Jadavpur Univ, Dept Instrumentat Sci, Kolkata, India
[3] Indian Stat Inst, Div Biol Sci, AERU, Kolkata 700108, India
[4] Maharaja Sayajirao Univ Baroda, Fac Engn & Technol, Dept Appl Phys, Baroda, Gujarat, India
[5] Jadavpur Univ, Dept Phys, Kolkata, India
关键词
QUANTUM DOTS; NANODOTS; NANOPARTICLES; PHOTOLUMINESCENCE; BRIGHT; ACID; DNA;
D O I
10.1039/c3tb00583f
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
082905 [生物质能源与材料]; 100103 [病原生物学];
摘要
A facile route has been developed to synthesise and isolate sulphur doped fluorescent carbon dots for the first time. Such carbogenic quantum dots exhibit a wide band gap of 4.43 eV with a high open circuit voltage (V-OC) of 617 mV along with a fill factor (FF) as high as 37%, using phenyl-C60-butyric acid methyl ester (PCBM) as the electron transporting layer. Besides the wide band gap, which is useful in the fabrication of solar cells, sulphur modified carbon dots also exhibit a high fluorescence quantum yield of 11.8% without any additional surface passivation, producing a unique fluorescent probe for further applications. In addition, the particles have a strong tendency to interact with the surface of gold nanoparticles and produce a thin fluorescent layer over their surfaces. Moreover, as they are completely biocompatible in nature, the highly fluorescent S-doped carbon dots have a strong potential for use in bioimaging applications. Interestingly, owing to the presence of oxygen and sulphur functionality, the highly negatively charged particles can easily bind with positively charged DNA-PEI complexes, simply by mixing them, and after interaction with DNA, bright blue fluorescence has been observed under an excitation wavelength of 405 nm.
引用
收藏
页码:2375 / 2382
页数:8
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