unist UNIST News Center UNIST News Center
KOREAN ENGLISH
  • HOME
  • Contents
    • All News
    • News
    • People
    • Community Contribution
    • Research
    • UNIST Unveils Ultra-Low Power, Fully Biodegradable Artificial Synapse with Record-Breaking Memory 11 hours ago
    • UNIST Receives MSIT Minister’s Commendation for Leadership in Research Administration 12 hours ago
    • UNIST Appoints Internationally Acclaimed Media Artist Ayoung Kim as Collaborating Professor 12 hours ago
    View all
    • UNIST Receives MSIT Minister’s Commendation for Leadership in Research Administration 12 hours ago
    • UNIST Recognized for Excellence in National Emergency Preparedness 13 hours ago
    • UNIST Claims Double Honors in Government R&D Funding Management Competition 3 days ago
    View all
    • UNIST Appoints Internationally Acclaimed Media Artist Ayoung Kim as Collaborating Professor 12 hours ago
    • Two Faculty Members Awarded Minister of Education Commendation 1 day ago
    • UNIST Chemistry Secures Two Major Honors from S-OIL Science & Culture Foundation 2 days ago
    View all
    • UNIST and PKNU Sign MOU to Promote Educational Donations and Develop Joint STEM Programs in Gyeongsang Region 4 months ago
    • UNIST Connects with Community Through Spring Concert for Children with Disabilities 8 months ago
    • Flower Beds at UNIST Given A New Lease of Life! 5 years ago
    View all
    • UNIST Unveils Ultra-Low Power, Fully Biodegradable Artificial Synapse with Record-Breaking Memory 11 hours ago
    • UNIST Unveils Ultra-Thin Materials to Boost Solar Hydrogen Production Efficiency 2 days ago
    • Revolutionary Method Enables Rapid, Eco-Friendly Production of Multi-Metal Nanostructures Using CO2 3 days ago
    View all
  • For Journalists
    • For Journalists
    • UNIST at a Glance
  • About News Center
    • About News Center
    • News & Communications Team
Menu
  • HOME
  • Contents
    • All News
    • News
    • People
    • Community Contribution
    • Research
    • UNIST Unveils Ultra-Low Power, Fully Biodegradable Artificial Synapse with Record-Breaking Memory 11 hours ago
    • UNIST Receives MSIT Minister’s Commendation for Leadership in Research Administration 12 hours ago
    • UNIST Appoints Internationally Acclaimed Media Artist Ayoung Kim as Collaborating Professor 12 hours ago
    View all
    • UNIST Receives MSIT Minister’s Commendation for Leadership in Research Administration 12 hours ago
    • UNIST Recognized for Excellence in National Emergency Preparedness 13 hours ago
    • UNIST Claims Double Honors in Government R&D Funding Management Competition 3 days ago
    View all
    • UNIST Appoints Internationally Acclaimed Media Artist Ayoung Kim as Collaborating Professor 12 hours ago
    • Two Faculty Members Awarded Minister of Education Commendation 1 day ago
    • UNIST Chemistry Secures Two Major Honors from S-OIL Science & Culture Foundation 2 days ago
    View all
    • UNIST and PKNU Sign MOU to Promote Educational Donations and Develop Joint STEM Programs in Gyeongsang Region 4 months ago
    • UNIST Connects with Community Through Spring Concert for Children with Disabilities 8 months ago
    • Flower Beds at UNIST Given A New Lease of Life! 5 years ago
    View all
    • UNIST Unveils Ultra-Low Power, Fully Biodegradable Artificial Synapse with Record-Breaking Memory 11 hours ago
    • UNIST Unveils Ultra-Thin Materials to Boost Solar Hydrogen Production Efficiency 2 days ago
    • Revolutionary Method Enables Rapid, Eco-Friendly Production of Multi-Metal Nanostructures Using CO2 3 days ago
    View all
  • For Journalists
    • For Journalists
    • UNIST at a Glance
  • About News Center
    • About News Center
    • News & Communications Team
Home artificial leaf

UNIST Achieves Commercial-Ready Artificial Photosynthesis Technology for Direct Solar-to-Hydrogen Conversion

The findings of this research have been published in Nature Communications (Impact Factor: 14.7) on May 6, 2025.

UNIST Achieves Commercial-Ready Artificial Photosynthesis Technology for Direct Solar-to-Hydrogen Conversion

Abstract An artificial leaf mimicking the function of a natural leaf has recently attracted significant attention due to its minimal space requirement and low cost compared to wired photoelectrochemical and photovoltaic-electrochemical syst... Read More

Jun 26, 2025 By JooHyeon Heo Research
Share 0
Tweet 0
Share 0

The Artificial Leaf Produces Hydrogen (H2) by Absorbing Sun Light

Prof. Jae Sung Lee's team found a 2nd generation's artificial leaf.

A cheaper, more stable, and more efficient photocatalyst is developed at UNIST.

The Artificial Leaf Produces Hydrogen (H2) by Absorbing Sun Light

Prof. Jae Sung Lee’s research team (School of Energy and Chemical Engineering) found a new type of artificial leaf that produces Hydrogen (H2) when it absorbs sun light in the water. This research started with the basic concept of photosynt... Read More

Dec 15, 2015 By Chorok Oh Research
Share 0
Tweet 0
Share 0

Popular

  • UNIST Unveils Ultra-Low Power, Fully Biodegradable Artificial Synapse with Record-Breaking Memory

    UNIST Unveils Ultra-Low Power, Fully Biodegrad..

    Dec 19, 2025
  • UNIST Unveils Ultra-Thin Materials to Boost Solar Hydrogen Production Efficiency

    UNIST Unveils Ultra-Thin Materials to Boost So..

    Dec 18, 2025
  • UNIST Featured in Nature Branded Content on AI-Driven Clean Energy Innovation

    UNIST Featured in Nature Branded Content on AI..

    Dec 14, 2025

UNIST E-Newsletters

Sign up today to receive a copy of the UNIST e-newsletter

<Personal Information Processing Consent Form>
UNIST wishes to obtain consent from Newsletter subscribers to the collection and processing of their personal information. Please read this document in its entirety before giving consent (select each blank as appropriate).

1. Items to be collected : e-mail address
2. Purposes of collection and use : to provide Newsletter service
3. Period of holding and use : until your cancelation
4. You have the right to refuse consent. However, you may not be provided with the aforementioned services due to rejection.
I give my consent for all personal information to be processed for the purposes described in this document and understand that I can withdraw my consent at any time.
  • UNIST Daily
  • UNIST Newsletter
  • For Journalists

Hot Video

[UNIST Webinar] AI enabled Computational Imaging for Biomedical Applications

Instagram

Instagram has returned empty data. Please authorize your Instagram account in the plugin settings .
logo
50 UNIST-gil, Ulsan 44919, Republic of Korea
Phone : +82 52 217 0114 /Admissions : +82 52 217 1120
  • Contents
    • News
    • People
    • Research
    • Photo & Video
  • For Journalists
    • UNIST at a Glance
  • About News Center
    • About News Center
    • UNIST Newsletter
    • Send Your Story Ideas
    • News & Communications Team