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通过化学方法对煤进行修饰,得到具有可调尺寸的荧光碳点,并研究其对 Cu(II)的检测能力。

Chemically tailoring coal to fluorescent carbon dots with tuned size and their capacity for Cu(II) detection.

机构信息

Carbon Research Laboratory, Liaoning Key Lab for Energy Materials and Chemical Engineering, State Key Lab of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, Dalian, 116024, P. R. China.

出版信息

Small. 2014 Dec 10;10(23):4926-33. doi: 10.1002/smll.201401328. Epub 2014 Jul 22.

Abstract

The desired control of size, structure, and optical properties of fluorescent carbon dots (CDs) is critical for understanding the fluorescence mechanism and exploring their potential application. Herein, a top-down strategy to chemically tailor the inexpensive coal to fluorescent CDs by a combined method of carbonization and acidic oxidation etching is reported. The size and optical properties of the as-made CDs are tuned by controlling the structures of graphitic crystallites in the starting precursor. The coal-derived CDs exhibit two different distinctive emission modes, where the intensity of the short-wavelength emission is significantly enhanced by partial reduction treatment. The evolution of the electronic structure and the surface states analysis show that two different types of fluorescence centers, nano-sized sp(2) carbon domains and surface defects, are responsible for the observed emission characteristics. The reduced CDs are demonstrated as an effective fluorescent sensing material for label-free and selective detection of Cu(II) ions with a detection limit as low as 2.0 nM, showing a great promise for real-world sensor applications.

摘要

通过碳化和酸性氧化刻蚀相结合的方法,从廉价的煤中制备出具有荧光性能的碳点(CDs),实现了尺寸、结构和光学性能的可控性,这对于理解荧光机制和探索其潜在应用具有重要意义。本文报道了一种自上而下的策略,通过碳化和酸性氧化刻蚀相结合的方法,将廉价的煤化学转化为具有荧光性能的 CDs。通过控制起始前体中石墨微晶的结构,可以调节所制备的 CDs 的尺寸和光学性能。煤衍生的 CDs 表现出两种不同的特征发射模式,其中通过部分还原处理可以显著增强短波长发射的强度。电子结构的演变和表面态分析表明,两种不同类型的荧光中心,即纳米级 sp2 碳畴和表面缺陷,负责观察到的发射特性。还原后的 CDs 可用作有效的荧光传感材料,用于无标记和选择性检测 Cu(II)离子,检测限低至 2.0 nM,在实际传感器应用中具有很大的应用前景。

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