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    Browsing Division of Chemical Sciences by Advisor "Aetukuri, Naga Phani B"

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      • Enabling Lithium Metal Anode for Garnet Electrolyte based Solid State Batteries 

        Raj, Vikalp
        Solid-state lithium metal batteries (SSLMB) employing inorganic solid electrolytes (ISE) in conjunction with lithium metal anode and intercalation cathode are considered among the most promising alternatives for Li-ion ...
      • Growth and Characterization of Single crystalline VO2 Heterostructures 

        Mahapatra, Smruti Rekha
        Vanadium dioxide is a strongly correlated material with a temperature driven metal-to-insulator transition (MIT) near room temperature (~340 K). This electronic transition is accompanied by a structural transition from ...
      • Ion insertion and Ion-host Interactions in Diketopyrrolopyrrole-based π-Conjugated Polymers 

        Samuel, Jibin J
        π-conjugated organic semiconductors are a class of technologically important materials with broad applicability in areas as diverse as energy conversion and storage, bioelectronics, and consumer electronics. This is because ...
      • On the Origin of Parasitic (Electro)Chemistry in Rechargeable Aprotic Metal-Oxygen Batteries 

        Akhila, S
        Aprotic metal-oxygen batteries, especially Li-O2 and Na-O2 batteries, could afford theoretical specific energies in excess of 1000 Wh/kg. However, the practical realization of the theoretically possible high specific ...
      • Synthesis and Modulation-Doping of VO2 (001) Epitaxial Thin Film Heterostructures 

        Mondal, Debasish
        Correlated electron materials (CEMs) host a rich variety of condensed matter phases. Vanadium dioxide (VO2) is a prototypical CEM that undergoes a temperature-driven metal-to-insulator transition (MIT) at ~340 K accompanied ...
      • Synthesis Optimization of LiNi0.5 Mn1.5 O4 for Long Cycle Life Li4Ti5O12/LiNi0.5Mn1.5O4 

        Singh, Subham
        Li-ion batteries (LIBs) have revolutionized the market of portable consumer electronics due to their high energy density (200 – 250 Wh Kg-1). However, most Li-ion chemistries employ expensive cobalt-based cathode active ...

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