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通过液相沉积在 MnCO3 微球上包覆 Titania 纳米层,用于制备模板辅助核壳和中空结构复合材料。

Titania nanocoating on MnCO3 microspheres via liquid-phase deposition for fabrication of template-assisted core-shell- and hollow-structured composites.

机构信息

Graduate School of Environmental Engineering, The University of Kitakyushu , Kitakyushu 808-0135, Japan.

出版信息

ACS Appl Mater Interfaces. 2014 Jan 8;6(1):57-64. doi: 10.1021/am404052p. Epub 2013 Dec 16.

Abstract

A novel class of core-shell- and hollow-structured MnCO3/TiO2 composites was synthesized by titania nanocoating on MnCO3 microspheres via two-step liquid-phase deposition at room temperature. Morphological change from core-shell to hollow microparticles was possible in the prepared samples by controlling prereaction time of MnCO3 and [NH4]2TiF6. Upon the prereaction process, the core of the core-shell MnCO3/TiO2 became highly porous, and a honeycomb-like surface that resembled the orientation of self-assembled MnCO3 nanocrystals was developed. The MnCO3 core was completely removed after 6 h prereaction. Calcination at 600 °C resulted in the transformation of both core-shell- and hollow-structured composites to Mn2O3/TiO2 anatase microspheres that retained their original morphologies. X-ray diffraction, field-emission scanning electron microscopy, Fourier transform infrared spectroscopy, transmission electron microscopy, and electron probe microanalysis were employed for microsphere characterization. As the first trial for application of the synthesized materials, solid-extraction of organics from aqueous media was examined using methylene blue (MB). Both types of Mn2O3/TiO2 composites showed very fast adsorption of MB with high extraction values of 5.2 and 6.4 μmol g(-1) for the core-shell and hollow structures, respectively. Current work provides a new approach for facile fabrication of titania-metal oxide nanocomposites with unique morphological features and promising application possibilities.

摘要

通过两步室温液相沉积法,在 MnCO3 微球上包覆 TiO2 纳米壳,成功合成了一类新型核壳和中空结构的 MnCO3/TiO2 复合材料。通过控制 MnCO3 和 [NH4]2TiF6 的预反应时间,可以使制备的样品从核壳结构转变为中空微球。在预反应过程中,核壳结构的 MnCO3/TiO2 的核变得高度多孔,形成了类似于自组装 MnCO3 纳米晶取向的蜂窝状表面。经过 6 h 的预反应,MnCO3 核完全被去除。在 600°C 下煅烧,导致核壳和中空结构的复合材料都转化为 Mn2O3/TiO2 锐钛矿微球,保持其原始形态。采用 X 射线衍射、场发射扫描电子显微镜、傅里叶变换红外光谱、透射电子显微镜和电子探针微分析对微球进行了表征。作为对合成材料应用的首次尝试,使用亚甲基蓝(MB)考察了从水介质中固相萃取有机物的情况。两种类型的 Mn2O3/TiO2 复合材料对 MB 都具有非常快的吸附速度,分别具有 5.2 和 6.4 μmol g-1 的高萃取值。本工作为制备具有独特形貌特征和潜在应用可能性的钛金属氧化物纳米复合材料提供了一种新方法。

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