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Arshad Hussain
King Fahd University of Petroleum and Minerals, Shenzhen University, Chinese Academy of Sciences Dalian Institute of Chemical Physics, University of Engineering and Technology Peshawar
About
Arshad Hussain currently working is a Postdoctoral researcher in IRC-HTCM, KFUPM, KSA. He worked (2023) as a postdoctoral researcher in IAS, SZ University. Dr. Arshad received his BE (2014) degree from DUET and Master's (2016) degree from UET Peshawar, Pakistan. He earned his Ph.D. degree (2021) from @DICP_CAS. Their current project is 'Designing and Performance of multifunctional separators/membranes in energy storage technology.
Employment
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King Fahd University of Petroleum and Minerals Posdoctoral2023 - Present
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Shenzhen University Postdoctoral2021 - 2023
Education
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Chinese Academy of Sciences Dalian Institute of Chemical Physics PhD2017 - 2021
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University of Engineering and Technology Peshawar Master2014 - 2016
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Dawood University of Engineering and Technology BS2010 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (71)
- Sustainable self-charging aqueous zinc-ion battery using calcium vanadate cathode derived from concrete waste Save
- Revealing the Role of MOF and COF Reticular Chemistry in Solid State Batteries: From Electrode to Electrolyte Design Save
- Decorative separator with spongy morphology polyaniline enables dendrite free zinc ion hybrid supercapacitor Save
- Designing coin-cell supercapacitors: Combining graphene foam with metal oxide composite electrodes for improved energy storage performance Save
- Tailoring Polysulfone Membranes With Surface‐Modified Silica for Efficient Separation of Oily Water Save
- Recent advances in synthesis and modulation of 2D heterostructures for sensing and detection applications Save
- Synergistic Role of UiO‐66 and UiO‐67 MOF‐Modified Glass Fiber Separators for Dendrite‐Free and Long‐Life Zinc‐Ion Batteries Save
- Electrospun Polybenzimidazole Separator With Superior Performance for Zinc Ion Battery Save
- Electrospun PVDF-HFP/MXene Membrane to Suppress Dendrite Growth for Safer Lithium Metal Batteries Save
- Thiourea-modified silk cotton carbon as an efficient sulfur host: A green approach for advanced aluminum-sulfur battery Save