Jungki Ryu (@_jungki1981) 's Twitter Profile
Jungki Ryu

@_jungki1981

Professor at UNIST | Interested in innovative (photo)electrochemical systems for sustainability. 🌲+☀️+⚡️ for 🌏
#solarfuel #biomass #plastics #electrocatalyst

ID: 1083417790361419777

linkhttps://www.bioinspired-materials.com calendar_today10-01-2019 17:38:24

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Jungki Ryu (@_jungki1981) 's Twitter Profile Photo

Thrilled to share our new study led by Prof. Yong Hwan Kim: fortified Fe–S clusters seal O₂ tunnels, making anaerobic Ni–Fe CO dehydrogenase air-viable—bringing us closer to ambient CO/CO₂ valorization. Proud of my team for the electrochemical enzyme analysis. 🔬

Thrilled to share our new study led by Prof. Yong Hwan Kim: fortified Fe–S clusters seal O₂ tunnels, making anaerobic Ni–Fe CO dehydrogenase air-viable—bringing us closer to ambient CO/CO₂ valorization. Proud of my team for the electrochemical enzyme analysis. 🔬
Jungki Ryu (@_jungki1981) 's Twitter Profile Photo

🔥📰Selected as a Hot Paper in Angewandte Chemie International Edition: 'Fortification of FeS Clusters Reshapes Anaerobic CO Dehydrogenase into an Air-Viable Enzyme through Multilayered Sealing of O₂ Tunnels.' The paper is open-access and free to read.

Jungki Ryu (@_jungki1981) 's Twitter Profile Photo

Join UNIST InnoCORE as a Postdoctoral Fellow and help revolutionize the future of AI-driven hydrogen technologies. * About InnoCORE UNIST InnoCORE is leading a large-scale national initiative to advance AI-powered, full-cycle hydrogen innovation — spanning material design,

Join UNIST InnoCORE as a Postdoctoral Fellow and help revolutionize the future of AI-driven hydrogen technologies.

* About InnoCORE
UNIST InnoCORE is leading a large-scale national initiative to advance AI-powered, full-cycle hydrogen innovation — spanning material design,
Jungki Ryu (@_jungki1981) 's Twitter Profile Photo

UNIST InnoCORE 지능형 수소기술 혁신연구단에서 포스닥 연구원 (InnoCORE Fellow)을 모집합니다! AI 기반 수소 기술의 글로벌 패권 확보를 위한 미래형 융합 인재를 찾습니다. * 모집 분야 (총 50명) - AI 기반 자율 실험 연구실: DFT, MD, AI/ML, 유/무기 소재, 자동화 등 - AI-디지털 트윈 공정

UNIST InnoCORE 지능형 수소기술 혁신연구단에서 포스닥 연구원 (InnoCORE Fellow)을 모집합니다! AI 기반 수소 기술의 글로벌 패권 확보를 위한 미래형 융합 인재를 찾습니다.

* 모집 분야 (총 50명)
- AI 기반 자율 실험 연구실: DFT, MD, AI/ML, 유/무기 소재, 자동화 등
- AI-디지털 트윈 공정
C&EN (Chemical & Engineering News) (@cenmag) 's Twitter Profile Photo

Geological resources may be able to provide billions—or even trillions—of metric tons of clean hydrogen, according to estimates from US government researchers. cen.acs.org/energy/hydroge…

Jungki Ryu (@_jungki1981) 's Twitter Profile Photo

Ambient solar thermal catalysis for polyolefin upcycling using copper encapsulated in silicon nanosheets and chloroaluminate ionic liquid nature.com/articles/s4192… #chemistry #feedly

Hoi Ri Moon (@hoimoon) 's Twitter Profile Photo

Dear all, This is Hoi Ri Moon. Somehow my account is hacked, and so this was not posted by me! (Please stop doing this!!!) All of the recent posting was not written by me! Don’t believe, follow, and retweet any post from now. I’m really sorry for your inconvenience!

Digital Catalysis Lab (Hao Li Lab) (@haolilab_digcat) 's Twitter Profile Photo

Our new catalysis theory work published in Advanced Functional Materials! "Bridging Theory and Experiment: Machine Learning Potential‐Driven Insights into pH‐Dependent CO₂ Reduction on Sn‐Based Catalysts" - Advanced Functional Materials advanced.onlinelibrary.wiley.com/doi/10.1002/ad…

Angewandte Chemie (@angew_chem) 's Twitter Profile Photo

#OnTheCover Fortification of FeS Clusters Reshapes Anaerobic CO Dehydrogenase into an Air-Viable Enzyme through Multilayered Sealing of O2 Tunnels (Yong Hwan Kim and co-workers) onlinelibrary.wiley.com/doi/10.1002/an… • onlinelibrary.wiley.com/doi/10.1002/an…

#OnTheCover Fortification of FeS Clusters Reshapes Anaerobic CO Dehydrogenase into an Air-Viable Enzyme through Multilayered Sealing of O2 Tunnels (Yong Hwan Kim and co-workers) onlinelibrary.wiley.com/doi/10.1002/an… • onlinelibrary.wiley.com/doi/10.1002/an…
Hyun-Wook Lee (@hwlee_unist) 's Twitter Profile Photo

We are very happy to announce that Ji-Eun and Vithiya's work has been published in Angewandte Chemie! Angewandte Chemie Elucidating Ligand Exchange Dynamics of Hexacyanochromate-Based Redox Mediators in Aqueous Iron-Chromium Redox Flow Batteries onlinelibrary.wiley.com/doi/10.1002/an…

Phys.org (@physorg_com) 's Twitter Profile Photo

#A new copper-based catalyst enables efficient conversion of #CarbonDioxide into high-purity #Methanol, offering a promising route for reducing emissions and advancing sustainable fuel production. @advmater doi.org/g9s6gg phys.org/news/2025-07-m…

Derek Thompson (@dkthomp) 's Twitter Profile Photo

Yes. Writing is not a second thing that happens after thinking. The act of writing is an act of thinking. Writing *is* thinking. Students, academics, and anyone else who outsources their writing to LLMs will find their screens full of words and their minds emptied of thought.

Yes. 

Writing is not a second thing that happens after thinking. The act of writing is an act of thinking. Writing *is* thinking.

Students, academics, and anyone else who outsources their writing to LLMs will find their screens full of words and their minds emptied of thought.
Jungki Ryu (@_jungki1981) 's Twitter Profile Photo

Turning CO₂ into methanol — our latest research on electrocatalysts is featured in this easy-to-read article! #CO2 #Methanol #CleanEnergy #electrocatalyts sciencenewstoday.org/scientists-tur…

Turning CO₂ into methanol — our latest research on electrocatalysts is featured in this easy-to-read article! #CO2 #Methanol #CleanEnergy #electrocatalyts 
sciencenewstoday.org/scientists-tur…
Nature Catalysis (@naturecatalysis) 's Twitter Profile Photo

Cobalt hydride-mediated photocatalytic semihydrogenation of acetylene impurities for continuous-flow production of polymer-grade ethylene bit.ly/46SfCyE

Cobalt hydride-mediated photocatalytic semihydrogenation of acetylene impurities for continuous-flow production of polymer-grade ethylene bit.ly/46SfCyE
Jungki Ryu (@_jungki1981) 's Twitter Profile Photo

This work highlights the power of block copolymer self-assembly to fabricate ultrafine bimetallic nanodot arrays, enabling highly efficient, low-mass-loading hydrogen evolution catalysts. Grateful to be part of this effort led by Prof. So Youn Kim at SNU. science.org/doi/10.1126/sc…

This work highlights the power of block copolymer self-assembly to fabricate ultrafine bimetallic nanodot arrays, enabling highly efficient, low-mass-loading hydrogen evolution catalysts. Grateful to be part of this effort led by Prof. So Youn Kim at SNU. 
science.org/doi/10.1126/sc…