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调节碳纳米点的光致发光和表面性质用于化学传感

Tuning photoluminescence and surface properties of carbon nanodots for chemical sensing.

作者信息

Zhang Zhaomin, Pan Yi, Fang Yaning, Zhang Lulu, Chen Junying, Yi Changqing

机构信息

Key Laboratory of Sensing Technology and Biomedical Instruments (Guangdong Province), School of Engineering, Sun Yat-Sen University, Guangzhou, China.

出版信息

Nanoscale. 2016 Jan 7;8(1):500-7. doi: 10.1039/c5nr06534h.

Abstract

Obtaining tunable photoluminescence (PL) with improved emission properties is crucial for successfully implementing fluorescent carbon nanodots (fCDs) in all practical applications such as multicolour imaging and multiplexed detection by a single excitation wavelength. In this study, we report a facile hydrothermal approach to adjust the PL peaks of fCDs from blue, green to orange by controlling the surface passivation reaction during the synthesis. This is achieved by tuning the passivating reagents in a step-by-step manner. The as-prepared fCDs with narrow size distribution show improved PL properties with different emission wavelengths. Detailed characterization of fCDs using elemental analysis, Fourier transform infrared spectroscopy, and X-ray photoelectron spectroscopy suggested that the surface chemical composition results in this tunable PL emission. Surface passivation significantly alters the surface status, resulting in fCDs with either stronger surface oxidation or N element doping that ultimately determine their PL properties. Further experiments suggested that the as-prepared orange luminescent fCDs (O-fCDs) were sensitive and specific nanosensing platforms towards Fe(3+) determination in a complex biological environment, emphasizing their potential practical applications in clinical and biological fields.

摘要

获得具有改善发射特性的可调谐光致发光(PL)对于在诸如多色成像和通过单一激发波长进行多重检测等所有实际应用中成功实现荧光碳纳米点(fCDs)至关重要。在本研究中,我们报告了一种简便的水热方法,通过在合成过程中控制表面钝化反应,将fCDs的PL峰从蓝色、绿色调节到橙色。这是通过逐步调整钝化试剂来实现的。所制备的尺寸分布窄的fCDs在不同发射波长下表现出改善的PL特性。使用元素分析、傅里叶变换红外光谱和X射线光电子能谱对fCDs进行的详细表征表明,表面化学成分导致了这种可调谐的PL发射。表面钝化显著改变了表面状态,导致fCDs具有更强的表面氧化或N元素掺杂,最终决定了它们的PL特性。进一步的实验表明,所制备的橙色发光fCDs(O-fCDs)是在复杂生物环境中检测Fe(3+)的灵敏且特异的纳米传感平台,强调了它们在临床和生物领域的潜在实际应用。

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