Dong Yongqiang, Lin Jianpeng, Chen Yingmei, Fu Fengfu, Chi Yuwu, Chen Guonan
Ministry of Education Key Laboratory of Analysis and Detection for Food Safety, Fujian Provincial Key Laboratory of Analysis and Detection for Food Safety, Department of Chemistry, Fuzhou University, Fujian 350108, China.
Nanoscale. 2014 Jul 7;6(13):7410-5. doi: 10.1039/c4nr01482k.
Six coal samples of different ranks have been used to prepare single-layer graphene quantum dots (S-GQDs). After chemical oxidation and a series of centrifugation separation, every coal could be treated into two fractions, namely, CoalA and CoalB. According to the characterization results of TEM, AFM, XRD, Raman and FTIR, CoalA was revealed to be mainly composed of S-GQDs, which have an average height of about 0.5 nm and an average plane dimension of about 10 nm. The obtained S-GQDs showed excitation-dependent fluorescence and excellent electrochemiluminescence. CoalB was found to be some other carbon-based nanomaterials (CNMs), including agglomerated GQDs, graphene oxide, carbon quantum dots and agglomerated carbon nanocrystals. Generally, low-ranked coals might be more suitable for the preparation of S-GQDs. The production yield of S-GQDs from the six investigated coals decreased from 56.30% to 14.66% when the coal rank increased gradually. In contrast, high-ranked coals had high production yield of CoalB and might be more suitable for preparing other CNMs that were contained in CoalB, although those CNMs were difficult to separate from each other in our experiment.
六种不同煤阶的煤样被用于制备单层石墨烯量子点(S-GQDs)。经过化学氧化和一系列离心分离后,每种煤都可被处理成两个组分,即煤A和煤B。根据透射电子显微镜(TEM)、原子力显微镜(AFM)、X射线衍射(XRD)、拉曼光谱和傅里叶变换红外光谱(FTIR)的表征结果,发现煤A主要由S-GQDs组成,其平均高度约为0.5 nm,平均平面尺寸约为10 nm。所制备的S-GQDs表现出激发依赖型荧光和优异的电化学发光性能。煤B则被发现是一些其他的碳基纳米材料(CNMs),包括团聚的GQDs、氧化石墨烯、碳量子点和团聚的碳纳米晶体。一般来说,低阶煤可能更适合制备S-GQDs。随着煤阶逐渐升高,六种被研究煤样制备S-GQDs的产率从56.30%降至14.66%。相反,高阶煤制备煤B的产率较高,可能更适合制备煤B中所含的其他碳基纳米材料,尽管在我们的实验中这些碳基纳米材料难以彼此分离。