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Synthesis of vanadium oxide colloidal dispersions for antistatic coatings

机译:抗静电涂层氧化钒胶体分散体的合成

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Vanadium oxide deposited in thin layers from aqueous colloidal dispersions exhibits electronic conductivity by a small polaron hopping conduction mechanism. Conductivity and static dissipative properties of coatings are unaffected by changes in humidity. Because vanadium oxide is highly colored, the deposition of effective antistatic coatings which are transparent and colorless requries that the percolative (networking forming) properties of the colloidal particles be maximized. The percolative properties of the colloid are strongly influenced by morphology of the dispersed particles and the extent to which they are well dispersed in the aquasol. These properties are determined by the synthetic route to the colloid. Vanadium oxide is the most potnet antistatic agent known and has been found to provide antistatic properties even when as little as 1 miilligram per square meter is used.
机译:沉积在来自胶体分散体的薄层中的氧化钒表现出通过小极化子跳跃传导机构的电子电导率。涂层的电导率和静态耗散性质不受湿度变化的影响。由于氧化钒是高色的,所以有效的抗静电涂层的沉积,其是透明和无色的涂布,即胶体颗粒的渗透(网络形成)性质最大化。胶体的渗透性能受到分散颗粒形态的强烈影响,以及它们在阿奎索中分散的程度。这些性质由胶体的合成途径确定。氧化钒是已知的最多Potnet抗静电剂,并且已经发现即使在使用每个平方米的1 miilligram时也可以提供抗静电性质。

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