Free‐standing δ‐MnO2 atomic sheets

Author:

Chahal Sumit1,Sahu Tumesh Kumar12,Kar Subhasmita1,Ranjan Harsh13,Ray Soumya Jyoti1,Kumar Prashant14ORCID

Affiliation:

1. Department of Physics Indian Institute of Technology Patna India

2. Department of Physics Shri Ramdeobaba, College of Engineering and Management Nagpur India

3. Department of Electrical Engineering Indian Institute of Technology Patna Bihta India

4. Global Innovative Centre of Advanced Nanomaterials The University of Newcastle Callaghan New South Wales Australia

Abstract

Abstractδ‐Manganese dioxide (δ‐MnO2) is a 2D material which possesses distinct properties and features due to its unique atomic structure and has already been utilized in numerous disciplines recently, especially in the field of magnetism, energy storage, magnetic resonance imaging, biocatalysts, and fluorescence sensing. Keeping an eye on the huge potential of this 2D material, we report our recent discovery of single‐step synthesis of MnO2 nanosheets via bottom‐up laser crystallization (of aqueous KMnO4 solution) and top‐down sonochemical exfoliation of bulk MnO2 powder. The successful synthesis of δ‐MnO2 nanosheets has been proved through the observation of characteristic Raman peaks at 173 and 634 cm−1 and characteristic X‐ray diffraction peaks. The optical band gap was found to be 1.64 and 1.45 eV for both methods. We also demonstrated that 2D‐MnO2 is a prominent candidate material for ammonia sensing and strain sensing. δ‐MnO2 powder, when employed as cathode material in Li‐ion batteries, results in a stable voltage of ˜0.5 V and in contrast, gives ˜1 V when used in Li‐S batteries and the attained voltage is stable even for >5 h. New methods of synthesis of δ‐MnO2 and its hybrids with graphene will lead to future generation devices, it is expected.

Funder

Science and Engineering Research Board

Indian Institute of Technology, Patna

Publisher

Wiley

Subject

General Engineering,General Computer Science

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