Zhou Cuo, Wu Shunwei, Qi Shenghui, Song Weijun, Sun Chunyan
School of Chemical Engineering, Qinghai University, Xining 810016, China.
J Anal Methods Chem. 2021 Dec 23;2021:9732364. doi: 10.1155/2021/9732364. eCollection 2021.
Hydrothermal synthesis of carbon quantum dots (CQDs) from natural biomass is a green and sustainable route for CQDs applications in various fields. In this work, the preparation and characterization of CQDs based on quinoa saponin were investigated. The optimum synthetic conditions determined by orthogonal experiments were as follows: 2 g quinoa saponin powder and 0.04 mol ethylenediamine reacted at 200°C for 10 h. The relative fluorescence quantum yield (QY = 22.2%) can be obtained, which is higher than some results reported in the literatures. The prepared CQDs had a small and uniform size (∼2.25 nm) and exhibited excitation wavelength-dependent blue light emission behavior. The CQDs displayed excellent sensitivity for Co detection along with good linear correlation ranging from 20 to 150 M and the detection limit of 0.49 M. The CQDs prepared in this experiment were successfully implanted into soybean sprouts for fluorescence imaging. The sprouts could grow healthily even soaked in the CQDs solution for two weeks, demonstrating the low toxicity of the CQDs. The advantages of the CQDs, such as low cost, ease of manufacture, nontoxicity, and stability, have potential applications in many areas such as metal ion detection and biosensing.
利用天然生物质水热合成碳量子点(CQDs)是CQDs在各个领域应用的一条绿色可持续途径。在本工作中,对基于藜麦皂苷的CQDs的制备及表征进行了研究。通过正交实验确定的最佳合成条件如下:2 g藜麦皂苷粉末与0.04 mol乙二胺在200°C反应10 h。可获得相对荧光量子产率(QY = 22.2%),高于文献报道的一些结果。制备的CQDs尺寸小且均匀(约2.25 nm),并表现出激发波长依赖性蓝光发射行为。CQDs对Co检测表现出优异的灵敏度,在20至150 M范围内具有良好的线性相关性,检测限为0.49 M。本实验制备的CQDs成功植入豆芽用于荧光成像。即使浸泡在CQDs溶液中两周,豆芽仍能健康生长,表明CQDs毒性低。CQDs具有低成本、易于制备、无毒和稳定性等优点,在金属离子检测和生物传感等许多领域具有潜在应用。