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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Investigation of the formation process of zeolitelike 3D frameworks constructed with ε-Keggintype polyoxovanadomolybdates with binding bismuth ions and preparation of a nano-crystal
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Investigation of the formation process of zeolitelike 3D frameworks constructed with ε-Keggintype polyoxovanadomolybdates with binding bismuth ions and preparation of a nano-crystal

机译:用结合铋离子的ε-Keggin型聚氧杂钒钼酸盐构造沸石样3D骨架的过程研究及纳米晶体的制备

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摘要

Reaction conditions for the synthesis of an ε-Keggin-type polyoxometalate-based 3D framework, (NH_4)_2.8H_(0.9)[ε-VMo_(9.4)V_(2.6)O_(40)Bi_2]·7.2H_2O (denoted as Mo–V–Bi oxide), are studied. It is found that the reaction time, temperature, pH of the solution, and starting compounds affect the production of Mo–V–Bi oxide. The crystal size of Mo–V–Bi oxide is controllable by changing bismuth compounds. Nanometer-sized Mo–V–Bi oxide is produced using a water-soluble bismuth compound, Bi(NO_3)_3·5H_2O, whereas micrometer to submicrometer-sized Mo–V–Bi oxide is produced using Bi(OH)_3, which is less soluble in water. The particle size of the material affects the properties of the material, such as surface area and catalysis. The investigation of the formation process of the material is carried out with Raman spectroscopy, which indicates that mixing (NH_4)_6Mo_7O_(24)·4H_2O, VOSO_4·5H_2O, and bismuth ions in water produces the ε-Keggin polyoxovanadomolybdate together with a ball-shaped polyoxovanadomolybdate, [Mo_(72)V_(30)O_(282)(H_2O)_(56)(SO_4)_(12)]~(36?) (denoted as {Mo_(72)V_(30)}). By heating the reaction mixture, the ε-Keggin polyoxovanadomolybdate assembles with bismuth ions to form Mo–V–Bi oxide, whereas {Mo_(72)V_(30)} assembles with other vanadium and molybdenum ions to form orthorhombic Mo–V oxide.
机译:合成ε-Keggin型多金属氧酸盐的3D骨架的反应条件(NH_4)_2.8H_(0.9)[ε-VMo_(9.4)V_(2.6)O_(40)Bi_2]·7.2H_2O(表示为Mo–V–Bi氧化物),进行了研究。发现反应时间,温度,溶液的pH值和起始化合物会影响Mo–V–Bi氧化物的产生。 Mo–V–Bi氧化物的晶体大小可通过改变铋化合物来控制。使用水溶性铋化合物Bi(NO_3)_3·5H_2O生产纳米级的Mo–V–Bi氧化物,而使用Bi(OH)_3生产微米至亚微米级的Mo–V–Bi氧化物。难溶于水。材料的粒径影响材料的性能,例如表面积和催化作用。用拉曼光谱法对材料的形成过程进行了研究,结果表明,在水中混合(NH_4)_6Mo_7O_(24)·4H_2O,VOSO_4·5H_2O和铋离子时,会生成ε-Keggin多氧钒钼钼酸盐形聚氧钒钼酸盐[Mo_(72)V_(30)O_(282)(H_2O)_(56)(SO_4)_(12)]〜(36?)(表示为{Mo_(72)V_(30)}) 。通过加热反应混合物,ε-Keggin聚氧杂钒钼酸盐与铋离子组装形成Mo–V–Bi氧化物,而{Mo_(72)V_(30)}与其他钒和钼离子组装形成正交的Mo–V氧化物。

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