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Template free and large-scale fabrication of silica nanotubes with centrifugal jet spinning

机译:无模板的离心射流纺丝法大规模制备二氧化硅纳米管

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Silica nanotubes are widely used in nanotechnology because of their unique properties. In this paper, silica nanotube fibers with wall thickness less than 100 nm and outer diameters ranging between 300 nm and 500 nm are fabricated using the centrifugal jet spinning (CJS) technique with two steps: spinning and annealing. Polyvinylpyrrolidone-silica (PVP-silica) composite fibers are initially spun with engineered spinning solutions. By controlling the degree of tetraethyl orthosilicate (TEOS) hydrolysis, unreacted excess TEOS is introduced into spinning solutions to form a dual-solvent system with ethanol. Because of the differential vapor pressures of TEOS and ethanol as well as their differential solubility of PVP and dispersion of silica, dual-solvent evaporation induces phase separation in the spinning solution. This promotes the formation of hollow structure in PVP-silica fibers during spinning. Silica nanotube fibers are obtained with subsequent thermal annealing of PVP-silica composite fibers. The diameter and wall thickness of the silica nanotubes can be controlled by tuning the content of TEOS in the initial spinning solutions. The mechanism of tubular structure formation is also explained and examined with the help of elemental analysis. The method used in this paper can provide a new direction for efficient and large-scale fabrication of nanomaterials with controlled morphologies.
机译:二氧化硅纳米管由于其独特的性能而被广泛用于纳米技术中。在本文中,使用离心喷射纺丝(CJS)技术通过两个步骤制造壁厚小于100 nm,外径介于300 nm和500 nm之间的二氧化硅纳米管纤维:纺丝和退火。聚乙烯吡咯烷酮-二氧化硅(PVP-二氧化硅)复合纤维最初是用工程纺丝溶液纺制的。通过控制原硅酸四乙酯(TEOS)的水解程度,将未反应的过量TEOS引入纺丝溶液中,从而与乙醇形成双溶剂系统。由于TEOS和乙醇的蒸气压不同,以及PVP和二氧化硅分散液的溶解度不同,因此双溶剂蒸发会在纺丝溶液中引起相分离。这促进了纺丝过程中PVP-二氧化硅纤维中空结构的形成。二氧化硅纳米管纤维是通过随后对PVP-二氧化硅复合纤维进行热退火而获得的。可以通过调节初始纺丝溶液中TEOS的含量来控制二氧化硅纳米管的直径和壁厚。管状结构形成的机理也通过元素分析得到了解释和检验。本文所使用的方法可以为有效且大规模地制造具有受控形貌的纳米材料提供新的方向。

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