Nano-TiO 2 /fluorinated polyacrylate hybrid latex was prepared by soap-free emulsion polymerization using reactive emulsifier. With the increase of modified nano-TiO 2 content, the monomer conversion gradually decreased while the gel rate slowly increased accordingly. The transmission electron microscopy (TEM) and dynamic light scattering (DLS) analyses indicated that the core-shell latex particles were uniform with narrow size distribution. In addition, the hybrid film formed from nano-TiO 2 /fluorinated polyacrylate latex presented higher thermal stability, mechanical and UVshielding performance than the film formed from fluorinated polyacrylate latex. Scanning electron microscopy (SEM) and water contact angles (WCA) analyses confirmed that the surface of hybrid film was slightly rough and hydrophobic. Furthermore, the energy dispersive X-ray (EDX) analysis revealed that the organic fluorine segment had the tendency to migrate to the film-air interface. At last, the results of the antibacterial activity and WCA showed that the cotton fabric treated with nano-TiO 2 /fluorinated polyacrylate hybrid latex possessed good antibacterial property and remarkable water repellency. POLYM. COMPOS., 00:000-000, remarkable water repellency. POLYM. COMPOS., 39:4467-4476, 2018. FIG. 3. TEM micrographs of the nano-TiO 2 /fluorinated polyacrylate hybrid latex particles stained with (a) and without (b) 2% phosphotungstic acid solution, and the modified nano-TiO 2 particles (c). FIG. 4. Particle size distribution of nano-TiO 2 /fluorinated polyacrylate latex particles determined by DLS. [Color figure can be viewed at wileyonlinelibrary.com] FIG. 12. Bacterial number (a) and antibacterial rate (b) of the treated fabric samples against C. albicans. [Color figure can be viewed at wileyonlinelibrary.com] FIG. 13. Effect of the modified nano-TiO 2 content on water contact angle of the treated fabric samples.
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