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首页> 外文期刊>Journal of Ceramic Processing Research. (Text in English) >Synthesis and characterization of hydrothermally grown potassium titanate nanowires
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Synthesis and characterization of hydrothermally grown potassium titanate nanowires

机译:水热生长钛酸钾纳米线的合成与表征

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摘要

Potassium titanate (KT) nanowires were synthesized by a one-step hydrothermal reaction between TiO2 and aqueous KOH solution. The effects of KOH concentration and reaction time on hydrothermal formation and KT nanowire growth were investigated. The nanowire growth mechanism was elucidated using a combined study of powder X-ray diffraction, and scanning and transmission electron microscopy. The results revealed that hydrothermal growth was initiated by the formation of amorphous-like Ti-O-K sheets in anatase. Increasing hydrothermal reaction time caused the transformation of anatase to Ti-O-K sheets, from which potassium hexa-titanate (K2Ti6O13) nuclei formed and grew to establish one-dimensional morphology through preferential growth along the b-axis. It was revealed that the hydrothermal reactions followed a quite different mechanism than the well-known calcination route. Potassium tetra-titanate (K2Ti4O9) crystals formed in the amorphous region using the hexa-titanate phase as a nucleation site for heterogeneous crystallization. Increasing the KOH concentration in the solution accelerated the hydrothermal reaction rate.
机译:钛酸钾(KT)纳米线是通过TiO2和KOH水溶液之间的一步水热反应合成的。研究了KOH浓度和反应时间对水热形成和KT纳米线生长的影响。使用粉末X射线衍射,扫描和透射电子显微镜的组合研究阐明了纳米线的生长机理。结果表明,水热生长是通过在锐钛矿中形成无定形的Ti-O-K片而引发的。水热反应时间的增加导致锐钛矿转化为Ti-O-K片,六钛酸钾(K2Ti6O13)核从该片形成,并通过沿b轴优先生长而形成一维形态。结果表明,与已知的煅烧途径相比,水热反应的机理完全不同。四钛酸钾(K2Ti4O9)晶体在非晶区形成,使用六钛酸盐相作为异质结晶的成核位点。溶液中KOH浓度的增加加速了水热反应速率。

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