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Annealing induced a well-ordered single crystal δ-MnO2 and its electrochemical performance in zinc-ion battery.


ABSTRACT: Herein, the formation and electrochemical performance of a novel binder-free turbostratic stacked/ well-ordered stacked δ-MnO2-carbon fiber composite cathodes in deep eutectic solvent (DES) based zinc-ion battery (ZIB) is reported. Results of morphological, elemental, and structural analyses revealed directly grown and interconnected δ-MnO2 crumpled nanosheets on a carbon fiber substrate. Moreover, an improvement via a simple annealing strategy in the stacking, surface area and conductivity of the δ-MnO2 sheets was observed. Annealing induces the rearrangement of δ-MnO2 sheets resulting in the transformation from turbostratic stacking to a well-ordered stacking of [Formula: see text]-MnO2 sheets, as indicated by the selected area electron diffraction (SAED) hexagonal single crystal pattern. Besides, the formation of the well-ordered stacking of [Formula: see text]-MnO2 sheets exhibited improved electrochemical performance and cyclability, as cathode material for ZIB. The novel strategy described in this study is an essential step for the development of binder-free δ-MnO2-C fiber composite with a well-ordered stacking of δ-MnO2 sheets. This study also demonstrated comparable electrochemical performance between the turbostratic [Formula: see text]-MnO2 sheets and the well-ordered stacked δ-MnO2 sheets.

SUBMITTER: Corpuz RD 

PROVIDER: S-EPMC6805881 | biostudies-other | 2019 Oct

REPOSITORIES: biostudies-other

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Annealing induced a well-ordered single crystal δ-MnO<sub>2</sub> and its electrochemical performance in zinc-ion battery.

Corpuz Ryan Dula RD   De Juan Lyn Marie Z LMZ   Praserthdam Supareak S   Pornprasertsuk Rojana R   Yonezawa Tetsu T   Nguyen Mai Thanh MT   Kheawhom Soorathep S  

Scientific reports 20191022 1


Herein, the formation and electrochemical performance of a novel binder-free turbostratic stacked/ well-ordered stacked δ-MnO<sub>2</sub>-carbon fiber composite cathodes in deep eutectic solvent (DES) based zinc-ion battery (ZIB) is reported. Results of morphological, elemental, and structural analyses revealed directly grown and interconnected δ-MnO<sub>2</sub> crumpled nanosheets on a carbon fiber substrate. Moreover, an improvement via a simple annealing strategy in the stacking, surface area  ...[more]

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