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一种用于高效去除重金属的碳点基粘土纳米复合材料。

A carbon dot-based clay nanocomposite for efficient heavy metal removal.

作者信息

Jlassi Khouloud, Al Ejji Maryam, Ahmed Abdelgalil Khalaf, Mutahir Hafsa, Sliem Mostafa H, Abdullah Aboubakr M, Chehimi Mohamed M, Krupa Igor

机构信息

Center for Advanced Materials, Qatar University P.O. Box 2713 Doha Qatar

College of Arts and Sciences, Qatar University P.O. Box 2713 Doha Qatar.

出版信息

Nanoscale Adv. 2023 Jul 3;5(16):4224-4232. doi: 10.1039/d3na00334e. eCollection 2023 Aug 8.

Abstract

Carbon dots and their derivatives with fascinating photoluminescence properties have recently attracted tremendous scientific attention. This work describes the preparation of novel fluorescent bentonite clay (B), modified with carbon dot nanomaterials (CDs), and its usage as a lead removal platform. The CDs were prepared using a hydrothermal method from graphitic waste which served as the carbon source material. The as-obtained CDs were found to be fluorescent, being spherical in shape, positively charged, and smaller than 5 nm. Encouraged by their structure and photoluminescence features, they were used as surface modifiers to make fluorescent bentonite nanocomposites. Bentonite was used as a negatively charged model of aluminosilicate and reacted with the positively charged CDs. XRD, FTIR, XPS, and fluorescence analysis were used to characterize the prepared materials. The results indicate that the CDs intercalated inside the bentonite matrix were stable with excellent optical properties over time. They were finally used as an efficient hybrid platform for lead removal with a removal efficiency of 95% under light conditions, at room temperature, in an alkaline medium, and after only 10 min of reaction, compared to 70% under dark conditions. The pseudo-second-order kinetics and Langmuir isotherm models were better fitted to describe the adsorption process. The maximum adsorption capacity was equal to 400 mg g toward Pb(ii) removal, at room temperature and pH = 8, under light conditions. To summarize, we have designed UV light stimuli responsive carbon dot-intercalated clay with high Pb(ii) adsorption capacity and long-term stability.

摘要

具有迷人光致发光特性的碳点及其衍生物最近引起了科学界的极大关注。这项工作描述了用碳点纳米材料(CDs)改性的新型荧光膨润土(B)的制备及其作为铅去除平台的用途。CDs是使用水热法从用作碳源材料的石墨废料中制备的。发现所获得的CDs具有荧光性,呈球形,带正电荷,且小于5nm。受其结构和光致发光特性的鼓舞,它们被用作表面改性剂来制备荧光膨润土纳米复合材料。膨润土用作铝硅酸盐的带负电荷模型,并与带正电荷的CDs反应。使用XRD、FTIR、XPS和荧光分析对制备的材料进行表征。结果表明,插层在膨润土基质中的CDs随着时间的推移具有良好的光学性能且稳定。它们最终被用作高效的混合铅去除平台,在室温、碱性介质、光照条件下,反应仅10分钟后,去除效率达95%,而在黑暗条件下去除效率为70%。拟二级动力学和朗缪尔等温线模型能更好地拟合描述吸附过程。在室温、pH = 8、光照条件下,对Pb(ii)的最大吸附容量等于400 mg g。总之,我们设计了对紫外光刺激有响应的、具有高Pb(ii)吸附容量和长期稳定性的碳点插层粘土。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c9a/10408590/2f4528cd78e7/d3na00334e-f1.jpg

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