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一种新型可拉伸的碳纳米管/Ni@TiO:W 光催化复合材料,可从饮用水中完全去除双氯芬酸药物。

A novel and stretchable carbon-nanotube/Ni@TiO:W photocatalytic composite for the complete removal of diclofenac drug from the drinking water.

机构信息

Consejo Nacional de Ciencia y Tecnología-División de Materiales Avanzados, Instituto Potosino de Investigación Científica y Tecnológica, San Luis Potosí 78216, México.

División de Ciencias e Ingenierías, Universidad de Guanajuato, León 37150, México.

出版信息

J Environ Sci (China). 2023 Apr;126:575-589. doi: 10.1016/j.jes.2022.05.028. Epub 2022 May 29.

DOI:10.1016/j.jes.2022.05.028
PMID:36503783
Abstract

We present the structural, morphological and photocatalytic properties of stretchable composites made with carbon nanotubes (CNTs), silicon rubber and Ni@TiO:W nanoparticles (TiWNi NPs) with average size of 37 ± 2 nm. Microscopy images showed that the TiWNi NPs decorated the surface of the CNT fibers, which are oriented in a preferential direction. TiWNi NPs presented a mixture of anatase/rutile phases with cubic structure. The performance of the TiWNi powders and stretchable composites was evaluated for the photocatalytic degradation of diclofenac (DCF) anti-inflammatory drug under ultraviolet-visible light. The results revealed that the maximum DCF degradation percentages were 34.6%, 91.9%, 97.1%, 98.5% and 100% for the CNT composite (stretched at 0%), TiWNi powders, CNT + TiWNi (stretched at 0%), CNT + TiWNi (stretched at 50%) and CNT + TiWNi (stretched at 100%), respectively. Thus, stretching the CNT + TiWNi composites was a good strategy to enhance the DCF degradation percentage from 97.1% to 100%, since stretching created additional defects (oxygen vacancies) that acted as electron sink, delaying the electron-hole recombination, and favors the DCF degradation. Raman/absorbance measurements confirmed the presence of such defects. Moreover, the reactive oxygen species (ROS) were determined by the scavenger's experiments and found that the main ROS were the ·OH and O radicals, which attacked the DCF molecules, causing their degradation. The results of this investigation confirmed that the stretchable CNT/TiWNi-based composites are a viable alternative to remove pharmaceutical contaminants from water and can be manually separated from the decontaminated water, which is unviable using photocatalytic powders.

摘要

我们展示了由碳纳米管(CNTs)、硅橡胶和平均尺寸为 37 ± 2nm 的 Ni@TiO:W 纳米粒子(TiWNi NPs)制成的可拉伸复合材料的结构、形态和光催化性能。显微镜图像显示,TiWNi NPs 修饰了 CNT 纤维的表面,这些纤维呈优先取向。TiWNi NPs 呈现出具有立方结构的锐钛矿/金红石混合相。评估了 TiWNi 粉末和可拉伸复合材料的性能,用于在紫外可见光下光催化降解双氯芬酸(DCF)抗炎药物。结果表明,对于 CNT 复合材料(拉伸 0%)、TiWNi 粉末、CNT+TiWNi(拉伸 0%)、CNT+TiWNi(拉伸 50%)和 CNT+TiWNi(拉伸 100%),DCF 的最大降解百分比分别为 34.6%、91.9%、97.1%、98.5%和 100%。因此,拉伸 CNT+TiWNi 复合材料是提高 DCF 降解百分比从 97.1%到 100%的有效策略,因为拉伸会产生额外的缺陷(氧空位),充当电子阱,延迟电子-空穴复合,并有利于 DCF 的降解。拉曼/吸收测量证实了这些缺陷的存在。此外,通过清除剂实验确定了活性氧物质(ROS)的存在,并发现主要的 ROS 是·OH 和 O 自由基,它们攻击 DCF 分子,导致其降解。这项研究的结果证实,基于可拉伸 CNT/TiWNi 的复合材料是从水中去除药物污染物的可行替代品,并且可以从被污染的水中手动分离出来,而使用光催化粉末则无法实现。

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