As a Research Scientist at Caltech, my focus is on pioneering advancements in hydrogen production and CO2 reduction technologies. With a deep-seated commitment to sustainability, I've contributed to the development of a hybrid electrochemical and catalytic compression system, directly generating high-pressure hydrogen. My role involves the intricate analysis of tomography and the design of energy device cells, enhancing the practicality of clean energy solutions.Leveraging my expertise in electrocatalysis and impedance spectroscopy, I've achieved groundbreaking performance in water electrolysis and energy storage devices. The team's efforts led to an AEM electrolyzer with exceptional durability and efficiency, setting a new industry benchmark. My mission is to continue pushing the boundaries of materials science to facilitate a greener future, in collaboration with a network of dedicated professionals at Caltech.
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Research ScientistCaltechPasadena, Ca, Us -
Research ScientistCaltech Sep 2023 - Present미국 캘리포니아 패서디나 -
Research ScientistCaltech Dec 2022 - Sep 2023Pasadena, Ca, Usa• Participated in the chemically pressurized hydrogen production field in the DOE-ARPA-E OPEN: A Hybrid Electrochemical and Catalytic Compression System for Direct Generation of High-Pressure Hydrogen at 700 Bar.• Analyzed tomography using the Beam Line (Advanced Light Source) as part of the Liquid Sunlight Alliance to study real-time degradation of CO2R.• Designed cells and stacks for various energy devices, including the development of an MEA evaluation device for low temperature electrolyzers.• Evaluated cell performance and durability for different energy devices. -
Postdoctoral FellowUniversity Of Waterloo Mar 2021 - Nov 2022Waterloo, Ontario, Canada• Implemented equipment set-up to improve the performance and durability of water electrolysis and energy storage devices.• Developed a high-durability water electrolysis stack through MEA optimization and electrode development.• Achieved AEM electrolyzer single cell performance of 4.3 A/cm2 at 1.9 V and durability over 3,000 hours with a degradation rate of 10 mV/kh.• Achieved the highest durability AEM electrolyzer stack (ACS Energy Lett. 2022, 7, 2576) with a record of 99.7% performance over 2,000 hours.• Achieved an efficiency of 75% at 45°C with a degradation rate of 8.5 mV/kh -
Postdoctoral FellowKorea Institute Of Materials Science May 2020 - Feb 2021Changwon, Korea• Participated in the development project for a 3-kW AEM electrolyzer for commercial use.• Designed and set up a 16-channel water electrolysis test station for simultaneous analysis.• Developed high-durability non-precious metal electrocatalysts for AEM electrolysis.• Designed stack components for the anion exchange membrane electrolyzer stack (500 NL/h) using CAD. -
Student ResearcherKorea Institute Of Materials Science Jul 2015 - Feb 2020Changwon, Korea• Conducted comprehensive experiments on electrocatalysts, electrodes, MEAs, single cells, and stacks for electrolysis and fuel cells.• Set up equipment for electrochemical analysis of electrolysis and fuel cells, such as potentiostat, current booster, fuel cell station, hot press, sonicated spraying, mass flow meter, etc.• Reported on the highest performance of anion exchange membrane electrolysis cell through the development of nano-sized non-precious metal catalysts (J. Mater. Chem. A, 2020, 8, 4290).• Developed MEA with reduced precious metals for fuel cell applications.• Tested and optimized various dispersing equipment to produce highly dispersed Pt/C slurries. -
SergeantRepublic Of Korea Army Mar 2008 - Jan 2010Incheon, South KoreaCompulsory service as a driver in the Republic of Korea ArmyDischarged as a sergeant
Frequently Asked Questions about Myeong Je (Mason) Jang
What company does Myeong Je (Mason) Jang work for?
Myeong Je (Mason) Jang works for Caltech
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Myeong Je (Mason) Jang's current role is Research Scientist.
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