Ziyauddin Khan
Linköping University, Linköpings universitet, Ulsan National Institute of Science and Technology, Tata Institute of Fundamental Research
About
Ziyauddin is working as an Associate Professor at Linköping University Sweden. He earned his PhD in Chemistry from the department of chemistry at Indian Institute of Technology (IIT) Guwahati, India, in 2013 on topic hydrogen generation by semiconductor photocatalysis. After, a short period of visiting postdoc at Tata Institute of Fundamental Research (TIFR), Mumbai, he joined as postdoctoral research associate at Ulsan National Institute of Science & Technology (UNIST), Republic of Korea in early 2014. At UNIST, he worked in the areas of hybrid Na-air batteries and hybrid supercapacitors. Following three-year postdoc at UNIST, Ziyauddin joined the Laboratory of Organic Electronics, in 2017, where his work focused on the development of highly concentrated polymer electrolyte for organic batteries. He is interested in fundamental and applied studies/research that relate to the development of water in salt electrolyte, organic batteries Zn ion battery and solid-state electrolytes. He is acting as an editor of Early Career Researchers Editorial Board of “Energy & Environmental Materials” published by Wiley VCH. He also served as a guest editor for a special issue in journal “Catalyst” published by MDPI in 2019-2020.
Employment
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Linköping University Associate Professor2025 - Present
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Linköpings universitet Principal Research Engineer2019 - 2025
Education
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Linköpings universitet Post doc2017 - 2019
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Ulsan National Institute of Science and Technology Post-doctoral Fellow2014 - 2017
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Tata Institute of Fundamental Research Post-doctoral Visiting Scientist2012 - 2014
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Indian Institute of Technology Guwahati PhD2008 - 2012
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Aligarh Muslim University MSc2005 - 2007
Projects & Funding
Projects & funding information is unavailable.
Publications (62)
- Utilization of sulfonated cellulose membrane for Zn ion hybrid capacitors Save
- Water‐in‐Polymer Salt Electrolyte for Long‐Life Rechargeable Aqueous Zinc‐Lignin Battery Save
- Agri-waste derived electroactive carbon-iron oxide nanocomposite for oxygen reduction reaction: an experimental and theoretical study. Save
- Author response for "Agri-waste derived electroactive carbon–iron oxide nanocomposite for oxygen reduction reaction: an experimental and theoretical study" Save
- The Origin of Thermal Gradient‐Induced Voltage in Polyelectrolytes Save
- Metal Ion-/Proton-Coupled Electron Transfer (MPCET) on ortho-Quinone Save
- Sustainable stretchable batteries for next-generation wearables Save
- Contributors Save
- 2D Zinc Oxide - Synthesis, Methodologies, Reaction Mechanism, and Applications. Save
- AQUEOUS POLYMER ELECTROLYTE Save