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首页> 外文期刊>Journal of Crystal Growth >Template-assisted synthesis of porous molybdenum dioxide nanofibers and nanospheres by redox etching method
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Template-assisted synthesis of porous molybdenum dioxide nanofibers and nanospheres by redox etching method

机译:氧化还原法模板辅助合成多孔二氧化钼纳米纤维和纳米球

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摘要

Synthesis of porous molybdenum dioxide MoO2 with one-dimensional (1D) and spherical morphology in aqueous solutions has been investigated systematically by varying the precursors and the reducing agents as well as the reaction temperature and durations. The average diameter of the MoO2 nanofibers is about 80-225 nm, and the length is up to 2 mu m. The average diameter of the MoO2 nanospheres is about 260-500 nm. The reduction of precursor yields a metastable amorphous oxide of lower-valence molybdenum, which will crystallize around 400 degrees C after calcinations. It has been found that the 1D morphology of the trioxide precursor and the hydrogen bonds associated with organic acid play a decisive role in determining the size and shape of the final product. The current method provides an approach to fabricate porous structure from a shaped template through redox etching process at ambient temperatures. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过改变前体和还原剂以及反应温度和持续时间,系统地研究了具有一维(1D)和球形形态的多孔二氧化钼MoO2的合成。 MoO2纳米纤维的平均直径约为80-225 nm,长度可达2μm。 MoO2纳米球的平均直径约为260-500 nm。前体的还原产生了较低价钼的亚稳态无定形氧化物,其在煅烧后将在400摄氏度左右结晶。已经发现,三氧化物前体的一维形态以及与有机酸相关的氢键在确定最终产物的尺寸和形状方面起决定性作用。当前的方法提供了一种在环境温度下通过氧化还原蚀刻工艺从成形模板制造多孔结构的方法。 (c)2006 Elsevier B.V.保留所有权利。

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