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氨基酸修饰的碳量子点-ZnO/纤维素纳米纤维多功能水凝胶的制备:增强吸附协同光还原和可逆荧光响应可视化识别 Cr(VI)。

Preparation of amino-modified carbon quantum dots-ZnO/cellulose nanofiber multifunctional hydrogel: Enhanced adsorption synergistic photoreduction and reversible fluorescence response visual recognition of Cr(VI).

机构信息

College of Science, Central South University of Forestry and Technology, Changsha 410004, China.

College of Environmental Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, China.

出版信息

Int J Biol Macromol. 2024 Jan;254(Pt 3):128068. doi: 10.1016/j.ijbiomac.2023.128068. Epub 2023 Nov 13.

Abstract

This work innovatively used cellulose nanofibers as a photocatalyst carrier, which could recycle nano-photocatalysts and minimize nanoparticle aggregation. The morphology, structures, chemical composition, optical-electronic properties and photocatalytic performance of amino-modified carbon quantum dots-ZnO/cellulose nanofiber (N-CQDs-ZnO/CNF: ZCH-2) hydrogel were characterized by SEM, TEM, BET, EDS, XRD, FTIR, UV-vis, XPS, PL and other techniques. The mechanism of Cr(VI) adsorption synergistic photoreduction by ZCH-2 was discussed in detail. The results showed that the prepared ZCH-2 had excellent removal performance for Cr(VI). After 120 min of adsorption and 40 min of photoreduction, the removal efficiency of Cr(VI) was 98.9 %. Compared with ZnO/CNF hydrogel, the adsorption performance of ZCH-2 increased by 268 % and the photoreduction performance increased by 116 %. The adsorption of Cr(VI) by ZCH-2 was controlled by electrostatic attraction and chemical adsorption. The photoreduction kinetic constant of ZCH-2 was 0.106 min, which was 8.9 times that of ZnO/CNF hydrogel. The N-CQDs in ZCH-2 could form N-CQDs-metal complexes with Cr(VI), resulting in fluorescence quenching, so Cr(VI) could be visually identified by fluorescence changes. This study provides a new idea for the design and optimization of a new multifunctional hydrogel with efficient adsorption-photoreduction-fluorescence recognition.

摘要

这项工作创新性地使用纤维素纳米纤维作为光催化剂载体,能够回收纳米光催化剂并最小化纳米颗粒聚集。通过 SEM、TEM、BET、EDS、XRD、FTIR、UV-vis、XPS、PL 等技术对氨基改性碳量子点-ZnO/纤维素纳米纤维(N-CQDs-ZnO/CNF:ZCH-2)水凝胶的形貌、结构、化学成分、光电性能和光催化性能进行了表征。详细讨论了 ZCH-2 协同光还原吸附 Cr(VI)的机理。结果表明,所制备的 ZCH-2 对 Cr(VI)具有优异的去除性能。在吸附 120 分钟和光还原 40 分钟后,Cr(VI)的去除效率达到 98.9%。与 ZnO/CNF 水凝胶相比,ZCH-2 的吸附性能提高了 268%,光还原性能提高了 116%。ZCH-2 对 Cr(VI)的吸附受静电吸引和化学吸附控制。ZCH-2 的光还原动力学常数为 0.106 min,是 ZnO/CNF 水凝胶的 8.9 倍。ZCH-2 中的 N-CQDs 可以与 Cr(VI)形成 N-CQDs-金属配合物,导致荧光猝灭,因此可以通过荧光变化来可视化识别 Cr(VI)。这项研究为设计和优化具有高效吸附-光还原-荧光识别功能的新型多功能水凝胶提供了新的思路。

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