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Hydrated layered manganese dioxide: III. Role of bismuth oxide on the redox behaviour of hydrated layered manganese dioxides

机译:水合层状二氧化锰:III。氧化铋对水合层状二氧化锰氧化还原行为的作用

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The previous studies to the hydrated layered manganese dioxides were extended to show the role of bismuth oxide in the mechanism of redox reactions. The steps identified for the mechanism of the redox reactions were suggested to be: (1) a short reversible one-phase reaction of charge transfer n congruent to 0.23 electron per formula unit; (2) a reversible two-phase reaction from the birnessite structure to a hydrotalcite-carbonate phase of an average Mn oxidation state of + 2.6; and, finally, (3) another two-phase reaction from the hydrotalcite-like intermediate to manganese hydroxide. In recharging of the later phase, a two-phase reaction took place yielding beta -MnOOH (Feitknechtite) which may be further oxidised to birnessite. The bismuth oxide was found to stabilise the intermediate phases (hydrotalcite during reduction or beta -MnOOH during oxidation) through the adsorption of the dissolved Bi(III) species on the active sites found mainly on the sides of the layered oxide. This adsorption formed a protective layer against the aggressive species which cause the transformation to the inactive 3D structure (e.g. Mn3O4). The protection is still effective as long as the adsorption equilibrium of bismuth species predominates. (C) 2001 Published by Elsevier Science B.V. [References: 29]
机译:以前对水合层状二氧化锰的研究已扩展到显示氧化铋在氧化还原反应机理中的作用。建议的氧化还原反应机理步骤为:(1)短时可逆的单相电荷转移n反应,相当于每个配方单位0.23个电子; (2)从水钠锰矿结构到平均锰氧化态为+2.6的水滑石-碳酸盐相的可逆两相反应;最后,(3)从水滑石状中间体到氢氧化锰的另一两相反应。在随后的相的充电中,发生两相反应,产生β-MnOOH(Feitknechtite),其可被进一步氧化成水钠锰矿。发现通过使溶解的Bi(III)物种吸附在主要位于层状氧化物侧面的活性部位上,氧化铋可稳定中间相(还原过程中的水滑石或氧化过程中的β-MnOOH)。这种吸附形成了针对侵蚀性物质的保护层,这些侵蚀性物质导致转变为非活性3D结构(例如Mn3O4)。只要铋物质的吸附平衡占主导地位,该保护仍然有效。 (C)2001年由Elsevier Science B.V.出版[参考文献:29]

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