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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Hydrothermal Transformation of Titanate Scrolled Nanosheets to Anatase over a Wide pH Range and Contribution of Triethanolamine and Oleic Acid to Control the Morphology
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Hydrothermal Transformation of Titanate Scrolled Nanosheets to Anatase over a Wide pH Range and Contribution of Triethanolamine and Oleic Acid to Control the Morphology

机译:钛酸盐的水热转化在宽的pH范围和三乙醇胺和油酸的贡献中滚动纳米片至锐钛矿,以控制形态

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摘要

Mild hydrothermal conditions used for the treatment of titanate scrolled nanosheets (SNSs) suspensions (140 degrees C, 72 h) resulted in a large variety of anatase TiO2 anisotropic nano-objects depending on the studied parameters: influence of the medium pH and the presence or not of structuring agents (SAs). The present work shows that such a hydrothermal treatment of the SNSs, whatever the pH, resulted in the formation of single-crystalline anatase nanoneedles (NNs) with a specific crystal-elongation direction and a pH dependent morphological anisotropy with aspect ratios (ARs) from 1 to 8. The SNSs suspensions were prepared by the conventional ultrabasic treatment of TiO2 with NaOH, followed by washing with HNO3 to different pH values. The crystal size of the anatase TiO2 obtained from this hydrothermal treatment increased with the pH of the suspensions, from 15 nm nanoparticles (NPs; AR = 1) at pH 2.2 to 500 nm NNs (AR = 8) at a pH 10.8 with a long axis systematically along the anatase [001] direction. Triethanol amine and oleic acid were used as SAs. Their respective influence, when acting on their own, had little influence on the control of the size, shape, or polydispersity of the NNs. However, their concomitant use provided a much better control of not only the size and polydispersity, which was strongly reduced, but also on (i) the shape and morphology giving rise to a controlled access to well-defined nanorods as opposed to nanoneedles and (ii) the crystal phase purity eliminating the few percent brookite still visible in the X-ray diffraction patterns of samples prepared in SA-free conditions. This approach offers an on-demand control over the production of anatase morphologies with defined aspect ratios.
机译:用于治疗钛酸钛酸的温和水热量条件(SNSS)悬浮液(140℃,72h)导致各种锐钛矿TiO2各向异性纳米物体,这取决于所研究的参数:培养基pH和存在的影响或不是结构性代理(SAS)。本作者表明,这种水热处理SNSS,无论pH值如何,导致具有特定晶体伸长方向的单晶锐钛矿纳米胺(NNS)和具有横向比(ARS)的pH依赖性形态各向异性1至8.通过用NaOH的TiO 2的常规超级处理制备SNSS悬浮液,然后用HNO 3洗涤至不同的pH值。从该水热处理获得的锐钛矿TiO 2的晶体尺寸随着pH2.2至500nm NNS(Ar = 8)的15nm纳米颗粒(NPS; Ar = 1)的pH值增加,具有较长的沿anaatase系统地系统地沿anaatase方向。使用三乙醇胺和油酸作为SAS。当自身行动时,它们各自的影响对NNS的规模,形状或多分散性的控制影响不大。然而,它们的伴随使用提供了更好的控制,不仅可以更好地控制强烈减少的大小和多分散性,而且还提供了对(i)的形状和形态,从而导致对纳米孔和( ii)晶相纯度消除了在无SA - 在无SA - 条件下制备的样品的X射线衍射图案中仍然可见的百分比Brookite。这种方法提供对具有定义纵横比的锐钛矿形态的按需控制。

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