Gu Shunchao, Kondo Tomohiro, Mine Eiichi, Nagao Daisuke, Kobayashi Yoshio, Konno Mikio
Department of Chemical Engineering, Graduate School of Engineering, Tohoku University, 07 Aoba, Aramaki-aza, Aoba-ku, Sendai 980-8579, Japan.
J Colloid Interface Sci. 2004 Nov 1;279(1):281-3. doi: 10.1016/j.jcis.2004.06.037.
Jingle bell-shaped hollow spheres were fabricated starting from multilayered particles composed of a silica core, a polystyrene inner shell, and a titania outer shell. Composite particles of silica core-polystyrene shell, synthesized by coating a 339-nm-sized silica core with a polystyrene shell of thickness 238 nm in emulsion polymerization, were used as core particles for a succeeding titania-coating. A sol-gel method was employed to form the titania outer shell with a thickness of 37 nm. The inner polystyrene shell in the multilayered particles was removed by immersing them in tetrahydrofuran. These successive procedures could produce jingle bell-shaped hollow spheres that contained a silica core in the titania shell.
从由二氧化硅核、聚苯乙烯内壳和二氧化钛外壳组成的多层颗粒开始制备铃铛状空心球。通过在乳液聚合中用厚度为238nm的聚苯乙烯壳包覆339nm尺寸的二氧化硅核而合成的二氧化硅核-聚苯乙烯壳复合颗粒,用作后续二氧化钛包覆的核颗粒。采用溶胶-凝胶法形成厚度为37nm的二氧化钛外壳。通过将多层颗粒浸入四氢呋喃中来去除其内聚苯乙烯壳。这些连续的步骤可以产生在二氧化钛壳中包含二氧化硅核的铃铛状空心球。