Arvinder Singh
Also known as: A. Singh
Sorbonne University, Drexel University, Indian Institute of Technology Kharagpur
About
I am an interdisciplinary researcher in the field of materials science and electrochemical devices (Supercapacitors, Batteries, Fuel cells, Sensors), driven to develop advanced safe technologies on industrial scale in order to cope with major challenges of our society including energy, environment, sustainability and health. I received my Ph.D. from the Department of Physics at the Indian Institute of Technology (IIT) Kharagpur, India in 2016. Post PhD, I worked on various battery systems (Li-ion, Na-ion, Zn-MnO2, Li-S, RT Na-S) at Drexel University, USA, Sorbonne University and Universite Paris Cite in France. Currently, I am working at IMN/CNRS as battery researcher.
Employment
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Sorbonne University Postdoctoral Researcher2019 - Present
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Drexel University Postdoctoral Fellow2016 - 2018
Education
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Indian Institute of Technology Kharagpur Ph.D.2011 - 2016
Projects & Funding
Projects & funding information is unavailable.
Publications (27)
- Functional Composite Separators with Cation-Trapping Abilities Save
- Enhanced Cycle Life and Expanded Voltage Window in Aqueous Proton Full Cells Using TiO2 Negative Electrodes with Cationic Vacancies Save
- Tuning the Valence of MnOx Cathodes Reveals the Universality of the Proton‐Coupled Electrodissolution/Electrodeposition Mechanism in Rechargeable Aqueous Zn Batteries Save
- Stabilization of gamma sulfur at room temperature to enable the use of carbonate electrolyte in Li-S batteries Save
- Synergistic effect of sulfur-rich copolymer/S8 and carbon host porosity in Li-S batteries Save
- The Role of Al3+-Based Aqueous Electrolytes in the Charge Storage Mechanism of MnOx Cathodes Save
- Towards a high MnO2 loading and gravimetric capacity from proton-coupled Mn4+/Mn2+ reactions using a 3D free-standing conducting scaffold Save
- Hydronium Ions Stabilized in a Titanate-Layered Structure with High Ionic Conductivity: Application to Aqueous Proton Batteries Save
- Electrospun nanostructures for conversion type cathode (S, Se) based lithium and sodium batteries Save
- Revisiting the use of electrolyte additives in Li–S batteries: the role of porosity of sulfur host materials Save