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The interactive effect of agitation condition and titania particle size in hydrothermal synthesis of titanate nanostructures

机译:搅拌条件和二氧化钛粒径在水热合成钛酸酯纳米结构中的相互作用

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摘要

The nucleation and growth mechanisms of hydrothermal synthesized nanotitanates are proposed based on the interaction effect between agitation condition and pristine titania particle size. TEM examination and N2 adsorption measurements revealed distinct morphology and textural properties depending on TiO2 particle size in constant agitation condition. Regarding to the supersaturation degree, heterogeneous nucleation dominates for nanotubes formation from large particle size of raw material. On the other hand, homogeneous nucleation determines nanospheres formation from small particle size of raw material. The nanotubes have an outer diameter ranging from 8 to 10 nm and inner diameter of 2 to 3 nm. The nanospheres have diameters ranging from 50 to 100 nm.
机译:基于搅拌条件与原始二氧化钛粒径的相互作用,提出了水热合成纳米钛酸盐的形核和生长机理。 TEM观察和N 2 吸附测量结果表明,在恒定搅拌条件下,取决于TiO 2 粒径,其形态和织构性质各不相同。关于过饱和度,异质成核作用主要是由大粒径的原料形成纳米管。另一方面,均相成核作用决定了由小颗粒原料形成的纳米球。纳米管的外径为8至10nm,内径为2至3nm。纳米球的直径为50至100nm。

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