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Revealing the Atomic Structures of Exposed Lateral Surfaces for Polymorphic Manganese Dioxide Nanowires

Yifei Yuan, Wentao Yao, Bryan W. Byles, Ekaterina Pomerantseva, Khalil Amine, Reza Shahbazian‐Yassar, Jun Lü

2020Small Structures27 citationsDOIOpen Access PDF

Abstract

Polymorphic 1D MnO 2 nanostructures are widely applied in fields such as catalysis, sensing, and energy storage with the functionality mainly determined by the atomic patterns of their laterally exposed facets, which largely remain unclear so far. Herein, by high‐resolution transmission electron microscopy (HRTEM) imaging directly along their axial directions, the atomic structures of the outmost lateral facets of polymorphic MnO 2 nanowires are disclosed. To generalize the findings, four most commonly seen phases with characteristic tunnel structures are targeted, i.e., β‐, γ‐, α‐, and todorokite(t)‐MnO 2 , which are synthesized conventionally using a hydrothermal method reported in the literature. Axially imaging these MnO 2 nanowires via HRTEM, the {hkl} facets covering the lateral surfaces are accurately indexed, the atomic pattern of each {hkl} facet is revealed, and it is further coupled with the outmost tunnel configuration that can significantly affect the physicochemical property of MnO 2 materials via tunnel‐driven mass adsorption/transport. This work provides a reliable reference for atomic modeling of MnO 2 to benefit the pursuit of its structure–property relationship; in addition, it can benefit surface engineering strategies to better rationalize the facet growth control with optimized functionality.

Topics & Concepts

High-resolution transmission electron microscopyNanowireFacet (psychology)Materials scienceNanocrystalHydrothermal circulationManganeseTransmission electron microscopyNanotechnologyNanostructureChemical physicsAdsorptionCrystallographyChemistryChemical engineeringPhysical chemistryMetallurgySocial psychologyPersonalityBig Five personality traitsEngineeringPsychologySupercapacitor Materials and FabricationZnO doping and propertiesElectronic and Structural Properties of Oxides
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