Key Laboratory of Applied Chemistry and Nanotechnology at Universities of Jilin Province, Changchun University of Science and Technology, Changchun 130022, P. R. China.
ACS Appl Mater Interfaces. 2021 Oct 20;13(41):49288-49300. doi: 10.1021/acsami.1c13722. Epub 2021 Oct 10.
Sensitive detection and effective removal of copper ions (Cu) from water are still arduous tasks required to protect public health and environmental safety because of the serious impacts of Cu on humans and other organisms. Herein, we report the design and fabrication of self-supporting flexible amidated polyacrylonitrile/branched polyethyleneimine nanofiber membranes (abbreviated as aPAN/BPEI NMs) facile electrospinning and a subsequent hydrothermal method, which are used not only as strips for the visual detection of Cu but also as effective adsorbents for the removal of Cu from water. Because aPAN/BPEI NMs are self-supporting, they can be easily removed from the solution to reduce secondary pollution to the environment. Based on the high Cu binding capacity of BPEI, Cu ions are adsorbed on the aPAN/BPEI NMs, which leads to the appearance of new absorbance bands at 280 and 636 nm and a color change from yellow to blue. aPAN/BPEI NMs are utilized for the visual detection of Cu with a linear range of 50-700 μM and limits of detection of 11.5 and 4.8 μM (absorption peaks at 280 and 636 nm). More importantly, aPAN/BPEI NMs exhibit excellent selectivity and certain recovery with a simple treatment. Furthermore, by utilizing the adsorption characteristics of Cu in aqueous media, it can be effectively removed by aPAN/BPEI NMs with a remarkable adsorption capacity of 209.53 mg·g. Additionally, the removal of Cu by aPAN/BPEI NMs does not exhibit interference by other foreign ions. The adsorption process conforms well to the pseudo-second order (PSO) kinetic model and Jovanovich model, proving that adsorption occurs chemical and monolayer adsorption mechanisms. Accordingly, this work will provide theoretical and technical support for the design and fabrication of novel heavy metal ion detection-removal integrated materials exhibiting high sensitivity and strong adsorption.
灵敏检测和有效去除水中铜离子(Cu)仍然是保护公众健康和环境安全的艰巨任务,因为 Cu 对人类和其他生物体的严重影响。在此,我们报告了自支撑柔性酰胺化聚丙烯腈/支化聚乙烯亚胺纳米纤维膜(简称 aPAN/BPEI NMs)的设计和制造,该方法通过简便的电纺丝和随后的水热方法,不仅可作为用于 Cu 可视化检测的条带,还可用作从水中有效去除 Cu 的吸附剂。由于 aPAN/BPEI NMs 是自支撑的,因此可以很容易地从溶液中去除,以减少对环境的二次污染。基于 BPEI 对 Cu 具有高结合能力,Cu 离子被吸附在 aPAN/BPEI NMs 上,这导致在 280 和 636nm 处出现新的吸收带,颜色从黄色变为蓝色。aPAN/BPEI NMs 用于 Cu 的可视化检测,线性范围为 50-700μM,检测限为 11.5 和 4.8μM(在 280 和 636nm 处的吸收峰)。更重要的是,aPAN/BPEI NMs 表现出优异的选择性和一定的回收率,处理简单。此外,利用 Cu 在水介质中的吸附特性,aPAN/BPEI NMs 可以有效地去除 Cu,具有 209.53mg·g 的显著吸附能力。此外,aPAN/BPEI NMs 去除 Cu 时不受其他外来离子的干扰。吸附过程符合准二级(PSO)动力学模型和 Jovanovich 模型,证明吸附发生是化学和单层吸附机制。因此,这项工作将为设计和制造具有高灵敏度和强吸附能力的新型重金属离子检测-去除一体化材料提供理论和技术支持。