Centre for Nanoscience & Nanotechnology, Panjab University, Chandigarh, 160014, India.
Department of Chemistry, Multani Mal Modi College, Patiala, Punjab, 147001, India.
Chem Asian J. 2020 Jul 16;15(14):2160-2165. doi: 10.1002/asia.202000523. Epub 2020 Jun 15.
The exponential growth in the research field of water pollution control demands the evolution of novel sensing materials for regulation and quantification of metals ions. Within this context, the current work reports a new strategy for the synthesis of carbon dots from the hydrothermal treatment of organic nanoparticles. The organic nanoparticles are found to be selective towards Cs(I) ions with a detection limit of 5.3 nM, whereas the highly fluorescent carbon dots are found to be selective towards Ag(I) ions with a detection limit of 4.8 nM. Both sensing systems illustrate rapid sensing with a working pH range from 4-9. The interfacial molecular restructuring of the sensing systems in the aqueous phase has been investigated in the absence and presence of targeted metal ions using a sum frequency generation vibrational spectroscopic tool. The practical applicability of the sensors was checked in environmental samples. This work opens new avenues for the exploration of temperature-guided sensing modulation in nanomaterials.
水污染控制研究领域的指数级增长要求开发新型传感材料,以实现对金属离子的调控和定量分析。在此背景下,本工作报道了一种从水热处理有机纳米粒子合成碳点的新策略。研究发现,这些有机纳米粒子对 Cs(I) 离子具有选择性,检测限低至 5.3 nM,而高荧光碳点对 Ag(I) 离子具有选择性,检测限低至 4.8 nM。这两种传感体系均表现出快速响应的特点,工作 pH 范围为 4-9。使用和频产生振动光谱工具,在不存在和存在靶向金属离子的情况下,研究了传感体系在水相中的界面分子重排。在环境样品中检查了传感器的实际适用性。这项工作为探索纳米材料中温度引导的传感调制开辟了新途径。