Kubiak Adam, Siwińska-Ciesielczyk Katarzyna, Jesionowski Teofil
Institute of Chemical Technology and Engineering, Faculty of Chemical Technology, Poznan University of Technology, Berdychowo 4, PL-60965 Poznan, Poland.
Materials (Basel). 2018 Nov 15;11(11):2295. doi: 10.3390/ma11112295.
Titania has properties that enable it to be used in a variety of applications, including self-cleaning surfaces, air and water purification systems, hydrogen evolution, and photoelectrochemical conversion. In order to improve the properties of titanium dioxide, modifications are made to obtain oxide/hybrid systems that are intended to have the properties of both components. In particular, zinc oxide, zirconia and molybdenum disulfide have been proposed as the second component of binary systems due to their antibacterial, electrochemical and photocatalytic properties. This paper presents a review of the current state of knowledge on the synthesis and practical utility of TiO₂-ZnO and TiO₂-ZrO₂ oxide systems and TiO₂-MoS₂ hybrid materials. The first part focuses on the hydrothermal method; then a review is made of the literature on the synthesis of the aforementioned materials using the sol-gel method. In the last section, the literature on the electrospinning method of synthesis is reviewed. The most significant physico-chemical, structural and dispersive-morphological properties of binary hybrid systems based on TiO₂ are described. A key aim of this review is to indicate the properties of TiO₂-ZnO, TiO₂-ZrO₂ and TiO₂-MoS₂ hybrid systems that have the greatest importance for practical applications. The variety of utilities of titania-based hybrid materials is emphasized.
二氧化钛具有多种特性,使其能够应用于各种领域,包括自清洁表面、空气和水净化系统、析氢以及光电化学转换。为了改善二氧化钛的性能,人们进行了改性以获得兼具两种组分特性的氧化物/混合体系。特别是,氧化锌、氧化锆和二硫化钼因其抗菌、电化学和光催化性能,被提议作为二元体系的第二种组分。本文综述了关于TiO₂-ZnO和TiO₂-ZrO₂氧化物体系以及TiO₂-MoS₂混合材料的合成与实际应用的当前知识状态。第一部分聚焦于水热法;接着回顾了使用溶胶-凝胶法合成上述材料的文献。在最后一部分,综述了关于静电纺丝合成法的文献。描述了基于TiO₂的二元混合体系最重要的物理化学、结构和分散形态特性。本综述的一个关键目标是指出对实际应用最为重要的TiO₂-ZnO、TiO₂-ZrO₂和TiO₂-MoS₂混合体系的特性。强调了基于二氧化钛的混合材料的多种用途。