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醋酸纤维素/聚氨酯共混物作为支撑基质,具有高光透过率和改善的机械性能,用于固定光催化剂 CeO 纳米粒子。

Cellulose acetate/polyurethane blend as support matrix with high optical transparency and improved mechanical properties for photocatalyst CeO nanoparticles immobilization.

机构信息

Polyaddition and Photochemistry Department, Petru Poni Institute of Macromolecular Chemistry, 41 A Grigore Ghica Voda Alley, 700487, Iasi, Romania.

Polyaddition and Photochemistry Department, Petru Poni Institute of Macromolecular Chemistry, 41 A Grigore Ghica Voda Alley, 700487, Iasi, Romania.

出版信息

Int J Biol Macromol. 2023 Nov 1;251:126210. doi: 10.1016/j.ijbiomac.2023.126210. Epub 2023 Aug 12.

DOI:10.1016/j.ijbiomac.2023.126210
PMID:37579894
Abstract

Advanced manufacturing technologies for efficient catalytic materials have triggered the rational design of catalysts as well as extensive investigation into preparative methodologies. Herein, we report the preparation of new versatile cellulose acetate/polyurethane (CA/PU) blends for efficient immobilization of CeO nanoparticles, the appropriate composition of polymer mixture being chosen after rigorous analysis (SEM, FTIR, optical, mechanical). The band gap energy for hybrid films ranged between 3.02 eV and 2.05 eV, the lowest value being measured for the film with Co-doped CeO NPs (B3 film). The best results in photodegradation of methylene blue under visible-light irradiation was attained after 50 min for B3 film (rate constant k = 45.34× 10 min), while the total mineralization of MB in the same conditions as evaluated by HPLC-ESI MS and TOC analyses was achieved after 90 min. Effect of co-ions (SO, Cl or NO) on photocatalytic performance was studied, and scavenger tests were used to identify the active species involved in the photocatalytic mechanism. Also, the photocatalytic efficiency of B3 sample was tested for rhodamine B, metronidazole and 4-nitrophenol degradation. Evaluation of the stability and integrity of hybrid film after 5 catalysis cycles reveal that the photocatalytic potential is retained with no substantial structural changes.

摘要

高效催化材料的先进制造技术引发了催化剂的合理设计以及广泛的制备方法研究。在此,我们报告了新型多功能醋酸纤维素/聚氨酯(CA/PU)共混物的制备,用于高效固定 CeO 纳米粒子,经过严格分析(SEM、FTIR、光学、力学)选择了合适的聚合物混合物组成。杂化膜的能带隙能量在 3.02 eV 和 2.05 eV 之间,Co 掺杂 CeO NPs(B3 膜)的最低值为 2.05 eV。在可见光照射下,B3 膜对亚甲基蓝的光降解在 50 分钟后达到最佳效果(速率常数 k = 45.34×10 min),而在相同条件下通过 HPLC-ESI MS 和 TOC 分析总矿化度在 90 分钟内达到。研究了共离子(SO、Cl 或 NO)对光催化性能的影响,并通过猝灭实验确定了光催化机制中涉及的活性物质。此外,还测试了 B3 样品对罗丹明 B、甲硝唑和 4-硝基苯酚的降解的光催化效率。经过 5 次催化循环后对杂化膜的稳定性和完整性进行评估,发现光催化潜力得以保留,没有明显的结构变化。

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