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钆掺杂的AgInS I-III-VI量子点的荧光传感及吸附动力学——以银离子相互作用为例的研究

Fluorescence sensing and adsorption kinetics of Gd-doped AgInS I-III-VI quantum dots - A case study of Ag ions interactions.

作者信息

May Bambesiwe M, Fakayode Olayemi J, Bambo Mokae F, Mishra Ajay K, Nxumalo Edward N

机构信息

Institute for Nanotechnology and Water Sustainability (iNanoWS), College of Science, Engineering, and Technology, University of South Africa, Florida Campus, 28 Pioneer Avenue, Roodepoort, 1709, Johannesburg, South Africa.

DSI/Mintek Nanotechnology Innovation Centre, Advanced Materials Division, Mintek, 200 Malibongwe Drive, Randburg, Johannesburg, South Africa.

出版信息

Heliyon. 2023 Aug 7;9(8):e19020. doi: 10.1016/j.heliyon.2023.e19020. eCollection 2023 Aug.

Abstract

The poor fluorescence properties of magneto-fluorescent paramagnetic-ion (Gd, Mn, or Co) doped I-III-VI quantum dots (QDs) at higher paramagnetic-ion doping concentrations have limited their use in magnetic-driven water-based applications. This work presents, for the first time, the use of stable magneto-fluorescent Gd-doped AgInS QDs at high Gd mole ratios of 16, 20, and 30 for the fluorescence detection and adsorption of Ag ions in water environments. The effect of pH, initial concentration, contact time, and adsorbent dosage were systematically evaluated. The AgInS QDs with the least Gd mole ratio (16) exhibited the best fluorescence characteristics (LOD = 0.88, R = 0.9549) while all materials showed good adsorption properties under optimized conditions (pH of 2, initial concentration of 30 ppm, contact time of 10 min and adsorbent dosage of 0.02 g) and a pseudo 2nd order reaction was followed. The adsorption mechanism was proposed to be a combination of ion-exchange, electrostatic interaction, complexation, and diffusion processes. Application in environmental wastewater samples revealed complete removal of Ag  ions alongside Ti Pb, Ni, Cr, and Zn ions.

摘要

磁性荧光顺磁离子(钆、锰或钴)掺杂的I-III-VI族量子点(QDs)在较高顺磁离子掺杂浓度下荧光性能较差,这限制了它们在磁驱动水基应用中的使用。这项工作首次展示了在钆摩尔比为16、20和30的高比例下使用稳定的磁性荧光钆掺杂硫化银铟量子点,用于水环境中银离子的荧光检测和吸附。系统评估了pH值、初始浓度、接触时间和吸附剂用量的影响。钆摩尔比最低(16)的硫化银铟量子点表现出最佳的荧光特性(检测限=0.88,R=0.9549),而所有材料在优化条件下(pH值为2,初始浓度为30 ppm,接触时间为10分钟,吸附剂用量为0.02 g)均表现出良好的吸附性能,且遵循准二级反应。吸附机理被认为是离子交换、静电相互作用、络合和扩散过程的组合。在环境废水样品中的应用表明,银离子以及钛、铅、镍、铬和锌离子被完全去除。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5215/10469056/2844d821cb84/ga1.jpg

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