University of Sfax, Faculty of Science, LCI, BP1171-3018 Sfax, Tunisia.
CQFM-Centro de Química-Física Molecular, IN-Institute for Nanosciences and Nanotechnologies, IBB-Institute for Bioengineering and Biosciences, Instituto Superior Técnico, Universidade de Lisboa, 1049-001 Lisboa, Portugal.
Int J Biol Macromol. 2018 Sep;116:1098-1104. doi: 10.1016/j.ijbiomac.2018.05.141. Epub 2018 May 21.
Thin films of chitosan (CS) coated on glass substrates were used as support for the immobilization of nanostructures TiO/ZnS via a mild chemical process followed by a hydrothermal treatment at 90 °C. The preparation route involved the coating of the CS film on the glass substrate followed by the deposition of a thin layer of Ti(OBu) precursor and immersion in a solution of Zn(OCCH) and NaS. After a hydrothermal treatment at 90 °C, an even layer of TiO anatase decorated by ZnS nanorods was generated. Evidence of the formation of TiO anatase and ZnS was confirmed by XRD, Raman and XPS, and the morphology of the TiO layer and ZnS nanoparticles was analyzed by FE-SEM observations. The photocatalytic activity of the CS-TiO-ZnS systems was evaluated by the degradation of a wide range of organic compounds including aromatic amines and carboxylic acids under a conventional halogen lamp.
将壳聚糖 (CS) 薄膜涂覆在玻璃基底上,用作通过温和的化学过程固定纳米结构 TiO/ZnS 的支撑物,然后在 90°C 下进行水热处理。制备路线包括在玻璃基底上涂覆 CS 薄膜,然后沉积一层 Ti(OBu) 前体并浸入 Zn(OCCH) 和 NaS 的溶液中。在 90°C 下水热处理后,生成了由 ZnS 纳米棒装饰的均匀 TiO 锐钛矿层。通过 XRD、拉曼和 XPS 证实了 TiO 锐钛矿和 ZnS 的形成,通过 FE-SEM 观察分析了 TiO 层和 ZnS 纳米颗粒的形态。通过在传统卤灯下降解包括芳香胺和羧酸在内的各种有机化合物来评估 CS-TiO-ZnS 体系的光催化活性。