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Mesostructured inorganic materials prepared with controllable orientational ordering

机译:以可控的取向有序制备介孔结构的无机材料

摘要

Mesostructured inorganic-organic materials, in the form of patterned films, monoliths, and fibers, can be prepared with controllable orientational ordering over macroscopic length scales. They are synthesized by controlling solvent removal rates across material interfaces, in conjunction with the rates of surfactant self-assembly and inorganic cross-linking and surface interactions. A method for controlling the rates and directions of solvent removal from a heterogeneous material synthesis mixture that allows the nucleation and directional alignment of self-assembling mesostructures to be controlled during synthesis is disclosed. The aligned mesostructured inorganic-organic materials and mesoporous inorganic or carbon materials can be prepared in the form of patterned films, monoliths, and fibers with controllable orientational ordering. Such materials possess anisotropic structural, mechanical, optical, reaction, or transport properties that can be exploited for numerous applications in opto-electronics, separations, fuel cells, catalysis, MEMS/microfluidics, for example.
机译:介孔结构无机-有机材料,以图案化的薄膜,整料和纤维形式,可以在宏观尺度上以可控的取向顺序进行制备。它们是通过控制跨材料界面的溶剂去除速率,以及表面活性剂自组装和无机交联以及表面相互作用的速率来合成的。公开了一种用于控制从异质材料合成混合物中去除溶剂的速率和方向的方法,该方法允许在合成过程中控制自组装介观结构的成核和定向排列。取向的介孔结构的无机-有机材料和介孔的无机或碳材料可以以图案化的膜,整料和具有可控制的取向次序的纤维的形式制备。这样的材料具有各向异性的结构,机械,光学,反应或传输性质,这些性质可用于例如光电,分离,燃料电池,催化,MEMS /微流体学的众多应用。

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