Wang Wei, Zheng Ang, Jiang Yifan, Lan Dongsheng, Lu Fenghua, Zheng Lelin, Zhuang Lin, Hong Ruijiang
Institute for Solar Energy Systems, Guangdong Provincial Key Laboratory of Photovoltaics Technologies, School of Physics, Sun Yat-Sen University Guangzhou 510275 People's Republic of China
School of Materials Science and Engineering, Sun Yat-Sen University Guangzhou 510275 People's Republic of China.
RSC Adv. 2019 Jan 2;9(1):498-506. doi: 10.1039/c8ra08352e. eCollection 2018 Dec 19.
Monodisperse colloidal particles have promising applications in electrophoretic displays with vivid colors, reversibility and low switching times. In this study, a facile, effective and large-scale strategy for preparing size-controlled FeO@SiO particles is reported. Multiple FeO particles were synthesized by a modified solvothermal method using sodium citrate as a surface modifier with a binary solvent, and were then coated with a SiO layer to obtain a highly negatively charged surface a modified Stöber method. Owing to the easily controlled sizes and sufficient surface charges, FeO@SiO particles can be assembled into colloidal amorphous arrays with the balance of electrostatic repulsion and electrophoretic forces. The reflections cover wavelengths ranging from 802 to 453 nm, and were optimized by investigating the dependence of the particles on variables such as particle size, particle volume fraction, and electric field intensity. The large-scale preparation of electrically responsive FeO@SiO particles facilitates an electrophoretic display with broad-range colors, showing the practical potential in industrial application.
单分散胶体颗粒在具有鲜艳色彩、可逆性和低切换时间的电泳显示器中有着广阔的应用前景。在本研究中,报道了一种简便、有效且大规模制备尺寸可控的FeO@SiO颗粒的策略。通过使用柠檬酸钠作为表面改性剂,在二元溶剂中采用改进的溶剂热法合成多个FeO颗粒,然后用SiO层包覆以获得带高负电荷的表面——一种改进的Stöber方法。由于尺寸易于控制且表面电荷充足,FeO@SiO颗粒能够在静电排斥力和电泳力的平衡作用下组装成胶体非晶阵列。反射覆盖的波长范围为802至453nm,并通过研究颗粒对诸如粒径、颗粒体积分数和电场强度等变量的依赖性进行了优化。电响应性FeO@SiO颗粒的大规模制备促进了具有宽色域的电泳显示器的发展,显示出其在工业应用中的实际潜力。