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Soluble colloidal manganese dioxide: Formation, identification and prospects of application

机译:可溶性胶体二氧化锰的形成,鉴定及应用前景

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Soluble colloidal MnO_2 was prepared by the reduction of KMnO_4 by three reducing agents as MnSO_4, Na _2S_2O_3 and HCOOH in neutral aqueous solutions at 25 C. Under suitable conditions, these solutions were dark brown in color and found to remain stable and transparent for several weeks. The obtained colloid was characterized by spectrophotometric and coagulation methods. The spectral behavior of soluble colloidal MnO_2 was studied. The λ_(max) was 390 nm when MnO_2 was prepared by the reduction of KMnO_4 by MnSO_4. Both the λ_(max) and the molar extinction coefficient depended on the method of preparation of colloidal MnO_2. The formation of MnO_2 was confirmed by the determination of the oxidation state of Mn-species in MnO _2. The behavior of as-prepared colloidal solution obeys Beer Lambert law, if the concentrations of the colloidal particles are assumed to be equal to [MNO _4 -]_0. Both spectral analysis and that using Rayleigh's law confirmed the existence of colloidal MnO_2. The observed coagulating efficiency depends not only on the concentration of electrolyte but also on the charge carried by the cation of the electrolyte. Stability of the colloidal particles in the aqueous solutions is determined by the negative charge on the surface of the colloidal particles.
机译:水溶性胶体MnO_2的制备方法是:在25°C的中性水溶液中,用三种还原剂MnSO_4,Na _2S_2O_3和HCOOH还原KMnO_4,在合适的条件下,这些溶液呈深棕色,并在几周内保持稳定和透明。通过分光光度法和凝结法对获得的胶体进行表征。研究了可溶性胶体MnO_2的光谱行为。当通过用MnSO_4还原KMnO_4制备MnO_2时,λ_(max)为390 nm。 λ_(max)和消光系数都取决于胶体MnO_2的制备方法。通过确定MnO _2中Mn物种的氧化态可以确认MnO_2的形成。如果假定胶体颗粒的浓度等于[MNO _4-] _ 0,则制备的胶体溶液的行为符合Beer Lambert律。光谱分析和使用瑞利定律的分析均证实了胶体MnO_2的存在。观察到的凝结效率不仅取决于电解质的浓度,还取决于电解质的阳离子携带的电荷。水溶液中的胶体颗粒的稳定性由胶体颗粒表面上的负电荷决定。

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