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Synthesis and Formation Mechanism of Manganese Dioxide Nanowires/Nanorods

Chemistry - A European Journal · 2002 · Vol. 9(1) · pp. 300–306
Xun WangYadong Li

Abstract

Alpha-, beta-, gamma-, and delta-MnO(2) single-crystal nanowires/nanorods with different aspect ratios have been successfully prepared by a common hydrothermal method based on the redox reactions of MnO(4)(-) and/or Mn(2+). The influences of oxidant, temperature, and inorganic cation (NH(4)(+) and K(+)) template concentrations on the morphology and crystallographic forms of the final products are discussed in this paper. It is interesting to find that all the MnO(2) one-dimensional nanostructures have a similar formation process: delta-MnO(2), which has a layer structure, serves as an important intermediate to other forms of MnO(2), and is believed to be responsible for the initial formation of MnO(2) one-dimensional nanostructures. A rolling mechanism has been proposed based on the results of the series of TEM images and XRD patterns of the intermediate.

ZnO doping and propertiesGas Sensing Nanomaterials and SensorsMultiferroics and related materialsNanorodManganeseNanowireHydrothermal circulationNanostructureCrystal structureNanotechnologyMaterials scienceMorphology (biology)Hydrothermal synthesis
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References
Preparation of a new crystal form of manganese dioxide: λ-MnO2
Journal of Solid State Chemistry · 1981 · 954 citations
One-dimensional nanostructures: Chemistry, physics & applications
Solid State Communications · 1998 · 885 citations
Room-Temperature Ultraviolet Nanowire Nanolasers
Science · 2001 · 8,881 citations
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