MH
Muhammad Hamza
Beijing Institute of Technology, University of Engineering and Technology
About
Computational physicists well versed in multi-scale analysis of interfacial adsorptions phenomenon for electrochemical energy storage and carbon capture.
Employment
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Beijing Institute of Technology Postdoctoral Fellow2025 - Present
Education
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Beijing Institute of Technology Ph.D.2021 - 2025
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Beijing Institute of Technology M.Sc2019 - 2021
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University of Engineering and Technology B.Sc2015 - 2019
Projects & Funding
Projects & funding information is unavailable.
Publications (15)
- Lithium solvation and interfacial structure in a ternary carbonate electrolyte at electrified graphite interface: Constant charge vs constant potential molecular dynamics Save
- Unraveling thermal oscillations in electric double layer capacitors: Linking interfacial ion overscreening and dielectric decrement to device performance via multi-scale electro-thermal approach Save
- Suppression of dynamic self-discharge of supercapacitor using multi-stage charging strategy Save
- Interfacial thermal signature of electrode/electrolyte interfaces and its effect on charge storage performance during charging of electrochemical energy storage devices Save
- Memory effect of external charging strategies on carbon-based supercapacitors and their self-discharge inhibition effect Save
- Simulation and fabrication of titanium dioxide thin films for supercapacitor electrode applications Save
- Physical interpretation of the electrochemical impedance spectroscopy (EIS) characteristics for diffusion-controlled intercalation and surface-redox charge storage behaviors Save
- Li-ion solvation structure at electrified solid–liquid interface: Understanding solvation structure dynamics and its role in electrochemical energy storage through binary ethylene carbonate and dimethyl carbonate solvent Save
- When LoRa meets distributed machine learning to optimize the network connectivity for green and intelligent transportation system Save
- Dynamic Effect of Overscreening on Electrochemical and Thermal Properties of EDLC Electrodes during Charging/Discharging Cycles Save