Yunnan Key Laboratory of Wood Adhesives and Glued Products National Joint Engineering Research Center for Highly-Efficient Utilization of Forest Biomass Resources, Southwest Forestry University, 300 Bailong Road, Kunming 650224, China.
Key Laboratory for Forest Resources Conservation and Utilization in the Southwest Mountains of China, Ministry of Education, Southwest Forestry University, Kunming 650224, China.
Int J Mol Sci. 2022 Jun 15;23(12):6681. doi: 10.3390/ijms23126681.
Carbon dots (CDs) are widely used nanomaterials that not only exhibit good biocompatibility and photostability, but also benefit from a simple preparation process and easy functionalization, making them promising for broad applications in the fields of heavy metal ion detection and optoelectronic devices. Based on the excellent optical properties of CDs and the current situation of increasing energy shortages, this paper selects the natural polyphenolic compound tannic acid (TA) found in biomass materials as the carbon source and innovatively adopts a simple and convenient solvent-free pyrolysis method without auxiliary reagents or solvents. The CDs with good water solubility and certain fluorescence properties were directly prepared under the condition of high temperature, and the obtained CDs exhibited blue fluorescence, and a high QY of 35.4% was obtained at 300 °C. The analysis and results demonstrate the selectivity of these CDs for the detection of various metal ion solutions. In particular, these CDs are sensitive to Ni and can be used as fluorescent sensors for the efficient and sustainable detection of Ni, whereas previous sensors were often specific to Fe and Hg. Thus, a new sensing technique has been developed for the detection of Ni to achieve more sensitive and rapid detection.
碳点(CDs)是一种被广泛应用的纳米材料,不仅具有良好的生物相容性和光稳定性,而且制备过程简单,易于功能化,因此在重金属离子检测和光电设备等领域具有广阔的应用前景。基于 CDs 的优异光学性质和日益严重的能源短缺现状,本文选择生物质材料中天然存在的多酚化合物单宁酸(TA)作为碳源,创新性地采用了一种简单方便的无溶剂热解方法,无需辅助试剂或溶剂。在高温条件下直接制备出具有良好水溶性和一定荧光性能的 CDs,所得 CDs 发出蓝色荧光,在 300°C 时获得了 35.4%的高量子产率。分析和结果表明,这些 CDs 对各种金属离子溶液的检测具有选择性。特别是,这些 CDs 对 Ni 具有敏感性,可以用作荧光传感器,用于高效、可持续地检测 Ni,而以前的传感器通常对 Fe 和 Hg 具有特异性。因此,开发了一种新的传感技术用于检测 Ni,以实现更灵敏和快速的检测。