Faure Bertrand, Salazar-Alvarez German, Ahniyaz Anwar, Villaluenga Irune, Berriozabal Gemma, De Miguel Yolanda R, Bergström Lennart
Department of Materials and Environmental Chemistry, Arrhenius Laboratory, Stockholm University, SE-106 91 Stockholm, Sweden.
YKI, Ytkemiska Institutet, Institute for Surface Chemistry, Drottning Kristinas Väg 45, SE-114 86 Stockholm, Sweden.
Sci Technol Adv Mater. 2013 Apr 26;14(2):023001. doi: 10.1088/1468-6996/14/2/023001. eCollection 2013 Apr.
This review describes recent efforts on the synthesis, dispersion and surface functionalization of the three dominating oxide nanoparticles used for photocatalytic, UV-blocking and sunscreen applications: titania, zinc oxide, and ceria. The gas phase and liquid phase synthesis is described briefly and examples are given of how weakly aggregated photocatalytic or UV-absorbing oxide nanoparticles with different composition, morphology and size can be generated. The principles of deagglomeration are reviewed and the specific challenges for nanoparticles highlighted. The stabilization of oxide nanoparticles in both aqueous and non-aqueous media requires a good understanding of the magnitude of the interparticle forces and the surface chemistry of the materials. Quantitative estimates of the Hamaker constants in various media and measurements of the isoelectric points for the different oxide nanoparticles are presented together with an overview of different additives used to prepare stable dispersions. The structural and chemical requirements and the various routes to produce transparent photocatalytic and nanoparticle-based UV-protecting coatings, and UV-blocking sunscreens are described and discussed.
本综述描述了用于光催化、紫外线阻隔和防晒应用的三种主要氧化物纳米粒子(二氧化钛、氧化锌和二氧化铈)在合成、分散和表面功能化方面的最新研究进展。简要介绍了气相和液相合成方法,并举例说明了如何制备具有不同组成、形态和尺寸的弱聚集光催化或紫外线吸收氧化物纳米粒子。回顾了解聚原理,并强调了纳米粒子面临的具体挑战。要在水性和非水性介质中稳定氧化物纳米粒子,需要充分了解粒子间作用力的大小以及材料的表面化学性质。文中给出了各种介质中哈梅克常数的定量估计值以及不同氧化物纳米粒子的等电点测量结果,并概述了用于制备稳定分散体的不同添加剂。此外,还描述并讨论了制备透明光催化和基于纳米粒子的紫外线防护涂层以及紫外线阻隔防晒霜的结构和化学要求,以及各种制备途径。