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首页> 外文期刊>International Journal of Quantum Chemistry >Characterization and thermal stability of cobalt-modified 1-D nanostructured trititanates
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Characterization and thermal stability of cobalt-modified 1-D nanostructured trititanates

机译:钴改性的一维纳米结构三钛酸盐的表征和热稳定性

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One-dimensional (1-D) nanostructured sodium trititanates were obtained via alkali hydrothermal method and modified with cobalt via ion exchange at different Co concentrations. The resulting cobalt-modified trititanate nanostructures (Co-TTNS) were characterized by TGA, XRD, TEM/SAED, DRS-UV-Vis and N-2 adsorption techniques. Their general chemical formula was estimated as NaxCoy/2H2-x-yTi3O7 center dot O-nH2 and they maintained the same nanostructured and multilayered nature of the sodium precursor, with the growth direction of nanowires and nanotubes along [010]. As a consequence of the Co2+ incorporation replacing sodium between trititanate layers, two new diffraction lines became prominent and the interlayer distance was reduced with respect to that of the precursor sodium trititanate. Surface area was slightly increased with cobalt intake whereas pore size distribution was hardly affected. Besides, Co2+ incorporation in trititanate crystal Structure also resulted in enhanced visible light photon absorption as indicated by a strong band-gap narrowing. Morphological and structural thermal transformations of Co-TNS started nearly 400 degrees C in air and the final products after calcination at 800 degrees C were found to be composed of TiO2-rutile, CoTiO3 and a bronze-like phase with general formula Na2xTi1-xCoxO2. (C) 2008 Elsevier Inc. All rights reserved.
机译:通过碱水热法获得一维(1-D)纳米结构的钛酸钠,并在不同的Co浓度下通过离子交换对钴进行改性。通过TGA,XRD,TEM / SAED,DRS-UV-Vis和N-2吸附技术对所得的钴改性三钛酸酯纳米结构(Co-TTNS)进行了表征。它们的一般化学式估计为NaxCoy / 2H2-x-yTi3O7中心点O-nH2,并且它们保持钠前体的纳米结构和多层性质,纳米线和纳米管的生长方向沿[010]。由于在三钛酸酯层之间掺入了Co2 +取代钠,因此出现了两条新的衍射线,并且相对于前体三钛酸钠而言,层间距离减小了。钴摄入后表面积略有增加,而孔径分布几乎不受影响。此外,三价钛酸盐晶体结构中的Co 2+掺入还导致可见光光子吸收增强,这由强的带隙变窄表示。 Co-TNS的形貌和结构热转变在空气中开始于近400摄氏度,并且在800摄氏度下煅烧后的最终产物由TiO2金红石,CoTiO3和通式为Na2xTi1-xCoxO2的类青铜相组成。 (C)2008 Elsevier Inc.保留所有权利。

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