首页> 外国专利> A METHOD OF THE PREPARATION OF FIBRILLAR AND LAMELLAR POROUS MICROSTRUCTURES AND NANOSTRUCTURES BY MEANS OF CONTROLLED VACUUM FREEZE-DRYING OF LIQUID NANOPARTICLES DISPERSIONS

A METHOD OF THE PREPARATION OF FIBRILLAR AND LAMELLAR POROUS MICROSTRUCTURES AND NANOSTRUCTURES BY MEANS OF CONTROLLED VACUUM FREEZE-DRYING OF LIQUID NANOPARTICLES DISPERSIONS

机译:液体纳米颗粒分散体真空冷冻干燥的原纤和层状多孔微结构及纳米结构的制备方法

摘要

The invention relates to a method of preparation of fibrillar and lamellar porous microstructures and nanostructures of various density based on controlled vacuum freeze-drying of a liquid dispersion of nanoparticles. According to the required density and structure of a final product, the particle concentration in the dispersion is adjusted from very low values for formation of fine, predominantly fibrillar structures, to very high values for formation of highly porous materials with high values of surface area in unit volume. The liquid dispersion of particles is rapidly freezed into solid state inside a tightly closed volume. In this form it is submitted to vacuum freeze-drying with required rate of sublimation of molecules of a liquid dispersion medium, until their total removal, accompanied by the creation of fibrillar and/or lamellar porous microstructures and nanostructures with density proportional to the initial concentration of particles in the dispersion and high value of surface area in unit volume. The orientation of the normal vector of the dominant surface of sublimation interface can be set with regard to the required properties of the final sublimate structure from vertically upwards to vertically downwards. The sublimation rate is adjusted by combination of vacuum depth and external heating of the sublimation interface of the frozen material.
机译:本发明涉及一种基于纳米颗粒的液体分散体的受控真空冷冻干燥来制备各种密度的原纤维和层状多孔微结构和纳米结构的方法。根据最终产品所需的密度和结构,将分散液中的颗粒浓度从非常低的值(形成细小,主要为原纤维状结构)调整为非常高的值,以形成具有高表面积的高孔隙率材料。单位体积。颗粒的液体分散体在紧密封闭的空间内迅速冻结成固态。以这种形式,将其以所需的液体分散介质分子的升华速率进行真空冷冻干燥,直至将其完全除去,同时形成密度与初始浓度成比例的原纤维和/或层状多孔微结构和纳米结构。分散体中的颗粒数和单位体积中较高的表面积值。升华界面的主表面的法线向量的方向可以根据最终升华结构的所需属性从垂直向上到垂直向下进行设置。通过真空深度和冷冻材料的升华界面的外部加热的组合来调节升华速率。

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