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Our group’s research focuses on different areas of electrochemical energy devices, including batteries and super capacitors. We apply tools of solid-state & inorganic chemistry to design materials for energy storage & conversion.  

Latest News

Arindam and Bhaskar bagged the "Best Poster Prize" in JIWES 2023

held at JNCASR

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RESEARCH TOPICS

                           Sodium-ion Batteries (SIBs): 

The growing concern over the cost and limited resources of lithium precursor forced researchers to seek alternative battery technologies. SIBs have been proposed as a potential candidate for grid energy storage due to inexpensive and abundant sodium precursors. The working principle of SIBs is similar to lithium-ion batteries, in which sodium ions get released from negative electrode during discharge, move towards positive electrode through electrolyte where it recombines with just arrived electrons that have come through external circuit. On charge, this entire process is reversed.
Our group focuses on the development of new positive and negative electrode materials, study their electrochemical properties and optimize their electrochemical performance.

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Multivalent ion Batteries: 
 
Unlike the monovalent alkali-ion intercalation, the multivalent cathodes have been designed to reversibly intercalate multivalent cations which involve more than one electron transfer, thereby increasing the storage capacity. However, the strong electrostatic interaction between guest ions and host lattice results slow solid-state diffusion and to alleviate this effect, sulfide hosts are preferred. In our group we have embarked to design and synthesize novel cathode materials for multivalent batteries.

Exploratory Solid-State Synthesis
 

Solid-state synthesis plays an important role to develop materials for many applications including rechargeable batteries, supercondutors, thermo- and ferro-electrics, etc.

Our group explores novel synthesis routes such as soft chemistry to develop new materials which cannot be synthesized by traditional ceramic process.

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Topochemical Bottom-up Synthesis

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