Stefik Morgan, Mahajan Surbhi, Sai Hiroaki, Epps Thomas H, Bates Frank S, Gruner Sol M, Disalvo Francis J, Wiesner Ulrich
Materials Science and Engineering, Cornell University, Ithaca, New York 14853.
Chem Mater. 2009 Nov 24;21(22):5466-5473. doi: 10.1021/cm902626z.
We report the first use of a non-frustrated block terpolymer for the synthesis of highly ordered oxide nanocomposites containing multiple plies. The morphological behavior of 15 ISO-oxide nanocomposites was investigated spanning a large range of compositions along the ƒ(I)=ƒ(S) isopleth using aluminosilicate and niobia sols. Morphologies were determined by TEM and SAXS measurements. Four morphologies were identified, including core-shell hexagonal, core-shell double gyroid, three-domain lamellae, and core-shell inverse-hexagonal, in order of increasing O+oxide vol fraction. All of the resulting nanocomposites had three- or five-ply morphologies containing domains that were continuous in one, two, or three dimensions. The five-ply core-shell double gyroid phase was only found to be stable when the O+oxide domain was a minority. Removal of the polymer enabled simple and direct synthesis of mesoporous oxide materials while retaining the ordered network structure. We believe that advances in the synthesis of multi-ply nanocomposites will lead to advanced materials and devices containing multiple plies of functional materials.
我们报道了首次使用非受挫嵌段三元共聚物合成含多层高度有序氧化物纳米复合材料。使用铝硅酸盐和氧化铌溶胶,沿着ƒ(I)=ƒ(S)等组成线在大范围组成内研究了15种ISO-氧化物纳米复合材料的形态行为。通过透射电子显微镜(TEM)和小角X射线散射(SAXS)测量确定形态。识别出四种形态,按O+氧化物体积分数增加的顺序依次为核壳六方、核壳双连续螺旋、三畴片层和核壳反六方。所有所得纳米复合材料均具有三层或五层形态,其包含在一维、二维或三维上连续的区域。仅当O+氧化物区域为少数时,五层核壳双连续螺旋相才被发现是稳定的。去除聚合物能够在保留有序网络结构的同时简单直接地合成介孔氧化物材料。我们相信多层纳米复合材料合成方面的进展将导致包含多层功能材料的先进材料和器件。