🎉 The UNIST Electrochemistry Pioneer Symposium 2025 was successfully concluded!
We gathered leading researchers in rechargeable batteries, electrocatalysis, electrochemical systems, and energy materials for inspiring and forward-looking discussions.
Huge thanks to all speakers, participants, the organizing committee (especially Prof. Hyun-Wook Lee @HWLee_UNIST ), staff, and our sponsors—EES Catalysis (RSC), Samsung SDI, InnoCORE, BK21, and NRF programs.
See you again next year!
#Electrochemistry #EnergyConversion #Catalysis #Sustainability #UNIST #Symposium2025
⚡ The 1st UNIST Electrochemistry Pioneers Symposium 2025 / 📅 Nov 13–14 /📍 UNIST, Ulsan, Korea. World-leading researchers from Stanford, Princeton, Georgia Tech, UC San Diego, UT Austin & UNIST will gather to discuss innovation in electrochemistry. #Electrochemistry #EnergyConversion #UNIST #Symposium
We are very happy to announce that Taewon and Seungwoo's work has been published in EES Batteries!
Structural polymorphism and carrier effects in sodium-ion conducting Prussian blue-type solid electrolytes https://t.co/sllkJQY15u
We are very happy to announce that Min-Ho and Jeongwoo's work has been published in Advanced Materials!
Microstructural Evolution Dynamics in Joule Heating Densification of High-Nickel Cathodes
https://t.co/wIobn5vIKc
We are very happy to announce that Ukhyun and Juyoung's work has been published in Electrochimica Acta!
How operando analysis enables quantitative understanding of dense lith... https://t.co/dv0io6AZPj
We are very happy to announce that Ji-Eun and Vithiya's work has been published in Angewandte Chemie!
@angew_chem
Elucidating Ligand Exchange Dynamics of Hexacyanochromate-Based Redox Mediators in Aqueous Iron-Chromium Redox Flow Batteries https://t.co/FAe6YAQayY
We are very happy to announce that Min-Ho's work was published in Science Advances! @ScienceAdvances
Metal-to-metal charge transfer for stabilizing high-voltage redox in lithium-rich layered oxide cathodes | Science Advances https://t.co/UKrZtazEA0
We are very happy to announce that Soon-Jae's work has been published in ACS Energy Letters! @ACSEnergyLett
Lithiation Diagnostics by Measuring Electrochemodynamics in Solid-State Batteries | ACS Energy Letters https://t.co/6WupluaDcF
Are there new ways to tune battery SEI chemistry? Out today in Joule, we show that the electrical double layer composition can be tuned by the electric field to improve battery SEI properties. This was a fruitful collab with the Sautet group! @UclaCBE https://t.co/Ed2ZljCGPJ
We are very happy to announce that Min-Ho's work has been accepted in Energy & Environmental Science! @RSC_Energy
Horizontal lithium growth driven by surface dynamics on single crystal Cu(111) foil - now published in Energy & Environmental Science https://t.co/t3BFjgYFQU
🔓 #OpenAccess: "Cathode Electrolyte Interphase Engineering for Prussian Blue Analogues in Lithium-Ion Batteries" by Wi, Park, Ko, Kim, Choi, Muralidharan, Choi, & @HWLee_UNIST
https://t.co/t08igHqF4h
We are very happy to announce that Tae-Ung and Changhyun's work has been published online in @NanoLetters!
Cathode Electrolyte Interphase Engineering for Prussian Blue Analogues in Lithium-Ion Batteries | Nano Letters https://t.co/g9P2x1vDTW
Chanhee's paper, "Enhancing Electrochemomechanics: How Stack Pressure Regulation Affects All-Solid-State Batteries" has made it to the Top Ten downloads on SSRN under the ChemRN Subject Matter eJournals category.
https://t.co/YJlcPlkWj4
@HWLee_UNIST examines how catalysts and inhibitors surpass challenges related to the water-splitting potential in aqueous redox flow batteries. #EESCatalysis https://t.co/grd7Pz9Q8d
Chanhee's research on the influence of stack pressure regulation in All-Solid-State Batteries is now published in 'Energy Storage Materials'!
Discover how stack pressure regulation enhances electrochemomechanics. Read more: https://t.co/wc4pxFF1ZM #EnergyStorageMaterials
We are pleased to provide our perspective on aqueous redox flow batteries, addressing the challenges of water-splitting potential!
Surpassing Water-Splitting Potential in Aqueous Redox Flow Batteries... - now published in EES Catalysis https://t.co/whC0b1ZB3E
We are very happy to announce that Hyun-Wook recently had an interview with JST (Japan Science and Technology) to introduce the strengths of our battery research at UNIST!
https://t.co/t6gfdrQrSj
🎉 Exciting news from Prof. Hyun-Kon Song's team! They've identified Guaiacol as an effective Organic Superoxide Dismutase Mimic, paving the way for anti-aging cathodes in Li-Ion Batteries. 🔋🪫https://t.co/e2fivXGnaM