UNIST Researchers Get Green Light to Commercialize Metal-Air Batteries
January 24, 2017 | UNISTEstimated reading time: 1 minute
A team of researchers, affiliated with UNIST has recently announced that they have successfully developed a new way to increase energy efficiency of metal-air batteries which are next-generation energy devices by using a conducting polymer.
This breakthrough research, led by Professor Hyun-Kon Song and Professor Guntae Kim of Energy and Chemical Engineering is appeared in the January issue of Energy & Environmental Science (EES), a world renowned academic journal in the field of energy.
In the cathode of metal-air batteries or fuel cells, oxygen is reduced to metal oxide or water. At this time, catalysts are required to accelerate the reaction. As the well known catalyst, platinum has remaining economical issue to commercialize the metal-air betteries or fuel cell due to its high price.
In the study, they reported that catalytic activity of provskite which can be substitute to platinum was dramatically enhanced by simply adding a kind of conducting polymer, polypyrrole and its principle.
When the perovskite or polypyrrole are used alone, their activities can not be reached to that of platinum. However, as a result of physically mixing perovksite with polypyrrole, the activity was dramatically enhanced and it was reached to that of platinum. This is first synergistic effect in oxygen electrocatalysis even though there was any chemical interaction between pervskite and polypyrrole.
“The reaction which oxygen receive electron is oxygen reduction. The property of polypyrrole which is sensitive to oxygen contribute to accelerate this reaction,” says Professor Song.
“Because the oxide-polypyrrole complex is made by simple operation, the catalyst will be proper to apply next-generation energy devices,” says Dong-Gyu Lee, the first author of the research.
Testimonial
"Advertising in PCB007 Magazine has been a great way to showcase our bare board testers to the right audience. The I-Connect007 team makes the process smooth and professional. We’re proud to be featured in such a trusted publication."
Klaus Koziol - atgSuggested Items
Trouble in Your Tank: Implementing Direct Metallization in Advanced Substrate Packaging
09/15/2025 | Michael Carano -- Column: Trouble in Your TankDirect metallization systems based on conductive graphite are gaining popularity throughout the world. The environmental and productivity gains achievable with this process are outstanding. Direct metallization reduces the costs of compliance, waste treatment, and legal issues related to chemical exposure. A graphite-based direct plate system has been devised to address these needs.
Curtiss-Wright Selected by Rheinmetall to Provide Turret Drive Stabilization System for the KF51 Panther Main Battle Tank
08/11/2025 | BUSINESS WIRECurtiss-Wright announced it has been selected by Rheinmetall Landsysteme Germany (RLS) to provide its modular turret drive stabilization system (TDSS) technology in support of the KF51 Panther Main Battle Tank (MBT).
European Global Mobile Artillery Rocket System Launcher Proves Capability with First-Ever Firing
08/04/2025 | Lockheed MartinLockheed Martin and Rheinmetall, partners in the Global Mobile Artillery Rocket System (GMARS) program, successfully conducted the first live fire of the GMARS launcher, demonstrating its capability to launch GMLRS rockets.
Rheinmetall Expands Local Production Activities in Romania
07/28/2025 | RheinmetallRheinmetall has established a comprehensive local production network in Romania, encompassing both its own companies in the country and new partnerships with Romanian companies.
STMicroelectronics, Metalenz Sign a New License Agreement to Accelerate Metasurface Optics Adoption
07/14/2025 | STMicroelectronicsSTMicroelectronics, a global semiconductor leader serving customers across the spectrum of electronics applications and Metalenz, the pioneer of metasurface optics, announced a new license agreement.