Hou Xiaofang, Hu Yin, Wang Ping, Yang Liju, Al Awak Mohamad M, Tang Yongan, Twara Fridah K, Qian Haijun, Sun Ya-Ping
Department of Chemistry and Laboratory for Emerging Materials and Technology, Clemson University, Clemson, South Carolina 29634, USA.
School of Pharmacy, Xi'an Jiaotong University, Xi'an 710061, China.
Carbon N Y. 2017 Oct;122:389-394. doi: 10.1016/j.carbon.2017.06.093. Epub 2017 Jun 28.
A simple yet consequential modification was made to the popular carbonization processing of citric acid - polyethylenimine precursor mixtures to produce carbon dots (CDots). The modification was primarily on pushing the carbonization processing a little harder at a higher temperature, such as the hydrothermal processing condition of around 330 °C for 6 hours. The CDots thus produced are comparable in spectroscopic and other properties to those obtained in other more controlled syntheses including the deliberate chemical functionalization of preprocessed and selected small carbon nanoparticles, demonstrating the consistency in CDots and reaffirming their general definition as carbon nanoparticles with surface passivation by organic or other species. Equally significant is the finding that the modified processing of citric acid - polyethylenimine precursor mixtures could yield CDots of record-setting fluorescence performance, approaching the upper limit of being quantitatively fluorescent. Thus, the reported work serves as a demonstration on not only the need in selecting the right processing conditions and its associated opportunities in one-pot syntheses of CDots, but also the feasibility in pursuing the preparation of quantitatively fluorescent CDots, which represents an important milestone in the development and understanding of these fluorescent carbon nanomaterials.
对柠檬酸-聚乙烯亚胺前驱体混合物的常用碳化工艺进行了一项简单却意义重大的改进,以制备碳点(CDots)。该改进主要是在更高温度下更严格地进行碳化处理,比如在约330℃水热条件下处理6小时。如此制备的碳点在光谱及其他性质方面,与通过其他更可控合成方法(包括对预处理和选定的小碳纳米颗粒进行刻意化学功能化)所获得的碳点相当,这证明了碳点性质的一致性,并重申了它们作为通过有机或其他物质进行表面钝化的碳纳米颗粒的一般定义。同样重要的是,研究发现对柠檬酸-聚乙烯亚胺前驱体混合物进行改进处理能够产生具有创纪录荧光性能的碳点,接近定量荧光的上限。因此,所报道的工作不仅证明了在碳点的一锅合成中选择合适处理条件的必要性及其相关机遇,还证明了制备定量荧光碳点的可行性,这代表了这些荧光碳纳米材料发展和理解过程中的一个重要里程碑。