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Investigation of Factors Influencing the Formation of Tungstate-Based Inorganic-Organic Hybrid Nanobelts/Nanotubes

机译:影响钨基无机 - 有机杂交纳米凝矿/纳米管形成形成的因素的研究

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Tungstate-based inorganic-organic hybrid nanobelts/nanotubes were synthesized in a system of H_2W_2O_7 centre dot xH_2O/n-octylamine/heptane (n-octylamine:H_2W_2O_7 centre dot xH_2O molar ratio: 30), and the effects of the volume ratios of heptane to n-octylamine and the amounts of interlayer water in H_2W_2O_7 centre dot xH_2O on the formation behavior of the hybrids were investigated. The belt/tubelike hybrids obtained were 10-20 mu m in length and 200-500 nm in apparent diameter. Large volume ratios of heptane to K-octylamine not only enhanced the degree of the long-range order of the lamellar structures in the hybrids, but they also improved the morphologic uniformity of the hybrids. The existence of interlayer water in H_2W_2O_7 centre dot xH_2O was indispensable to the formation of tungstate-based inorganic-organic hybrid nanobelts/nanotubes. The amounts of interlayer water in H_2W_2O_7 centre dot xH_2O varied over a wide range (x, from 0.85 to 4.1), had a neglectable effect on the morphology of the tungstate-based nanophase hybrids, but exerted a remarkable influence on the rate of the reaction of H_2W_2O_7 centre dot xH_2O with n-octylamine in the heptane solvent. The larger the amount of interlayer water, the more rapid the reaction rate.
机译:钨系无机 - 有机杂化纳米带/纳米管在H_2W_2O_7中心点xH_2O的体系中合成的/正辛胺/庚烷(正辛胺:H_2W_2O_7中心点xH_2O摩尔比:30),和庚烷的容积比的影响到正辛胺和层间水的在H_2W_2O_7中心点xH_2O对杂交体的形成行为的量进行了研究。获得的带/管状杂交种10-20亩的长度和表观直径为200nm-500nm微米。庚烷的大体积比至K辛胺不仅提高在杂种层状结构的长程有序的程度,但也提高了杂交体的形态均匀性。层间水在H_2W_2O_7中心点xH_2O存在是必不可少的基于钨酸盐的无机 - 有机杂化纳米带/纳米管的形成。层间水在H_2W_2O_7中心点xH_2O量变化在大范围内(X,从0.85至4.1),对所述基于钨酸盐纳米杂化物的形态可忽略的影响,但施加在反应的速率有显着影响的H_2W_2O_7中心点xH_2O与在庚烷溶剂正辛胺。层间水量越大,反应速率越快。

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