unist UNIST News Center UNIST News Center
KOREAN ENGLISH
  • HOME
  • Contents
    • All News
    • News
    • People
    • Community Contribution
    • Research
    • Revolutionary Reusable MoS₂ RF Biosensor Enables Cost-Effective Liquid Biopsies for Early Cancer Detection 21 hours ago
    • [2026 UNIST Matriculation] “Design Questions the World Has Never Seen!” 2 days ago
    • [2026 Matriculation] UNIST Welcomes Class of 2030! 2 days ago
    View all
    • [2026 Matriculation] UNIST Welcomes Class of 2030! 2 days ago
    • [2026 UNIST Commencement] UNIST Confers Degrees to 883 Graduates 3 days ago
    • UNIST and Korea Zinc Train 291 AI Specialists to Advance Smart Smelting Operations 7 days ago
    View all
    • [2026 UNIST Matriculation] “Design Questions the World Has Never Seen!” 2 days ago
    • [2026 UNIST Commencement] “Become Way Makers Who Open Paths Where None Are Drawn!” 3 days ago
    • [2026 UNIST Commencement] Voices of Class of 2026 4 days ago
    View all
    • UNIST and PKNU Sign MOU to Promote Educational Donations and Develop Joint STEM Programs in Gyeongsang Region 6 months ago
    • UNIST Connects with Community Through Spring Concert for Children with Disabilities 10 months ago
    • Flower Beds at UNIST Given A New Lease of Life! 5 years ago
    View all
    • Revolutionary Reusable MoS₂ RF Biosensor Enables Cost-Effective Liquid Biopsies for Early Cancer Detection 21 hours ago
    • New Study Unveils Ultra-Compact, Low-Power Semiconductor Circuit for High-Quality Clock Signals with Minimal Noise 2 days ago
    • Revolutionary High-Performance ECG Patch Eliminates Cold Gel and Irritating Adhesives 1 week 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
    • Revolutionary Reusable MoS₂ RF Biosensor Enables Cost-Effective Liquid Biopsies for Early Cancer Detection 21 hours ago
    • [2026 UNIST Matriculation] “Design Questions the World Has Never Seen!” 2 days ago
    • [2026 Matriculation] UNIST Welcomes Class of 2030! 2 days ago
    View all
    • [2026 Matriculation] UNIST Welcomes Class of 2030! 2 days ago
    • [2026 UNIST Commencement] UNIST Confers Degrees to 883 Graduates 3 days ago
    • UNIST and Korea Zinc Train 291 AI Specialists to Advance Smart Smelting Operations 7 days ago
    View all
    • [2026 UNIST Matriculation] “Design Questions the World Has Never Seen!” 2 days ago
    • [2026 UNIST Commencement] “Become Way Makers Who Open Paths Where None Are Drawn!” 3 days ago
    • [2026 UNIST Commencement] Voices of Class of 2026 4 days ago
    View all
    • UNIST and PKNU Sign MOU to Promote Educational Donations and Develop Joint STEM Programs in Gyeongsang Region 6 months ago
    • UNIST Connects with Community Through Spring Concert for Children with Disabilities 10 months ago
    • Flower Beds at UNIST Given A New Lease of Life! 5 years ago
    View all
    • Revolutionary Reusable MoS₂ RF Biosensor Enables Cost-Effective Liquid Biopsies for Early Cancer Detection 21 hours ago
    • New Study Unveils Ultra-Compact, Low-Power Semiconductor Circuit for High-Quality Clock Signals with Minimal Noise 2 days ago
    • Revolutionary High-Performance ECG Patch Eliminates Cold Gel and Irritating Adhesives 1 week ago
    View all
  • For Journalists
    • For Journalists
    • UNIST at a Glance
  • About News Center
    • About News Center
    • News & Communications Team
Home ECHE

Rapid Heating Technique Extends the Lifespan of High-Nickel Cathode Materials

Their findings have been published online in the prestigious journal Advanced Materials on August 4, 2025.

Their innovative sintering process suppresses unwanted particle growth, thereby enhancing battery performance.

Rapid Heating Technique Extends the Lifespan of High-Nickel Cathode Materials

Abstract High-energy density materials are essential for the advancement of next-generation lithium-ion batteries, which power a wide range of applications from portable electronics to electric vehicles. Among them, high-Nickel (Ni) layered... Read More

Aug 22, 2025 By JooHyeon Heo Research
Share 0
Tweet 0
Share 0

Researchers Develop Innovative Method to Store Hydrogen Using Waste Polystyrene

The findings were published as a back cover of the August 2025 issue of ACS Catalysis.

Researchers Develop Innovative Method to Store Hydrogen Using Waste Polystyrene

Abstract To address the dual challenges of plastic waste management and sustainable hydrogen storage, we propose an innovative strategy to upcycle post-consumer polystyrene (PS) waste into liquid organic hydrogen carriers (LOHCs). The proce... Read More

Aug 19, 2025 By JooHyeon Heo Research
Share 0
Tweet 0
Share 0

Twisted Bilayer MOFs Enable Customized Moiré Length Scales, Paving the Way for Advances in Twistronics and Quantum Materials

The work by Professor Wonyoung Choe has been appeared in Nature Communications on August 13, 2025.

Twisted Bilayer MOFs Enable Customized Moiré Length Scales, Paving the Way for Advances in Twistronics and Quantum Materials

When two mesh screens or fabrics are overlapped with a slight offset, moiré patterns emerge as a result of interference caused by the misalignment of the grids. While these patterns are commonly recognized as optical illusions in everyday l... Read More

Aug 14, 2025 By JooHyeon Heo Research
Share 0
Tweet 0
Share 0

New Insights Improve Water Electrolyzer Longevity by Addressing Platinum Clumping

Their findings were published online in ACS Energy Letters on July 3, 2025.

New Insights Improve Water Electrolyzer Longevity by Addressing Platinum Clumping

Abstract Understanding early stage degradation in anion exchange membrane water electrolyzers (AEMWEs) is critical, as the majority of the long-term performance loss arises during the initial phase of operation. In this study, we employed a... Read More

Aug 11, 2025 By JooHyeon Heo Research
Share 0
Tweet 0
Share 0

Breakthrough in Extending the Lifespan of Large-Scale Safe Energy Storage with Iron-Chromium Flow Batteries

Their findings were published online in Angewandte Chemie International Edition on July 2, 2025.

Breakthrough in Extending the Lifespan of Large-Scale Safe Energy Storage with Iron-Chromium Flow Batteries

Abstract Aqueous redox flow batteries (AQRFBs) are revolutionizing energy storage by integrating sustainability with cutting-edge innovation. Among them, Iron-Chromium RFBs (Fe-Cr RFBs), which utilize aqueous-based electrolytes, effectively... Read More

Aug 04, 2025 By JooHyeon Heo Research
Share 0
Tweet 0
Share 0

Novel Solar System Converts Nitrate in Wastewater into High-Value Ammonia

Their findings have been published online in Advanced Materials on June 22, 2025.

Novel Solar System Converts Nitrate in Wastewater into High-Value Ammonia

Abstract The photoelectrochemical nitrate reduction reaction (PEC NO3RR) potentially converts nitrate, a major water pollutant, into NH3, which is an eco-friendly, next-generation energy source. However, achieving high efficiency in the PEC... Read More

Jul 25, 2025 By JooHyeon Heo Research
Share 0
Tweet 0
Share 0

New Study Unveils Innovative Technology for Early Detection of Short-Circuit Precursors in ASSBs

The research findings have been published online in ACS Energy Letters on June 10, 2025.

New Study Unveils Innovative Technology for Early Detection of Short-Circuit Precursors in ASSBs

Abstract A significant challenge in solid-state batteries remains the need to understand and control electrochemomechanical phenomena arising from the complex interplay between electrochemical reactions and mechanical stress within the cell... Read More

Jul 22, 2025 By JooHyeon Heo Research
Share 0
Tweet 0
Share 0

Revolutionary Low-Emission NH3 Production Method Achieves 5.6-Fold Increase in Yield Using Silicon Nitride

Their findings were published online in Nature Communications on July 1, 2025.

Revolutionary Low-Emission NH3 Production Method Achieves 5.6-Fold Increase in Yield Using Silicon Nitride

Abstract By enabling ammonia synthesis under near ambient conditions, mechanochemistry provides a paradigm shift, a new decentralized production method that avoids the high temperature (above 400 °C) and high pressure (above 200 bar) requir... Read More

Jul 21, 2025 By JooHyeon Heo Research
Share 0
Tweet 0
Share 0

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

UNIST and SK On Strengthen Collaboration to Cultivate Battery Talent and Enhance R&D Capabilities

On May 27, UNIST and SK On signed a memorandum to extend the 'e-SKB Industry-Academia Cooperative Program.'

UNIST and SK On Strengthen Collaboration to Cultivate Battery Talent and Enhance R&D Capabilities

UNIST announced its plans to deepen collaboration with SK On to foster talent in the battery industry. This strategic partnership aims to attract outstanding researchers, broaden the foundation of research and development, and secure future... Read More

May 28, 2025 By JooHyeon Heo News
Share 0
Tweet 0
Share 0
«‹23456›»

Popular

  • New Study Unveils Ultra-High Sensitivity Broadband Flexible Photodetectors

    New Study Unveils Ultra-High Sensitivity Broad..

    Jan 30, 2026
  • UNIST and HHI-TMC Join Hands to Advance SMR Technology and Cultivate Specialized Talents

    UNIST and HHI-TMC Join Hands to Advance SMR Te..

    Jan 29, 2026
  • New Study Unveils High-Voltage Power Generator Inspired by Electric Rays

    New Study Unveils High-Voltage Power Generator..

    Jan 29, 2026

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