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

Their findings have been published in Nature Communications on November 27, 2025.

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

Abstract Biodegradable artificial synapses hold great promise for sustainable neuromorphic electronics, yet combining long-term memory, ultralow energy consumption, and mechanical robustness remains challenging. Here, we report a fully biod... Read More

Dec 19, 2025 By JooHyeon Heo Research
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UNIST Featured in Nature Branded Content on AI-Driven Clean Energy Innovation

Titled “How AI Is Speeding the Progress of Green Hydrogen,” the article spotlights UNIST’s AI-driven approach to advancing scalable clean-energy technologies.

UNIST Featured in Nature Branded Content on AI-Driven Clean Energy Innovation

UNIST is featured in a branded content article published on Nature, in collaboration with Springer Nature, highlighting its research strengths in green hydrogen, AI-driven energy modeling, and industry-based innovation. Titled “How AI... Read More

Dec 14, 2025 By JooHyeon Heo News
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Simple Teflon Coating Boosts Hydrogen Production Efficiency by 40%

Their findings were published online in Advanced Science on November 11, 2025, and featured as a cover article.

Simple Teflon Coating Boosts Hydrogen Production Efficiency by 40%

Abstract Conventional studies on water electrolysis have primarily focused on designing novel electrocatalysts and membranes, with intrinsic properties closely linked to the immediate performance of water electrolyzers. However, less attent... Read More

Dec 05, 2025 By JooHyeon Heo Research
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New Polymer Electrolyte Design Promises Safer, Longer-Lasting Solid-State Lithium Batteries

The findings of this study have been published in the online version of Energy Storage Materials (IF 20.2) on October 31, 2025.

New Polymer Electrolyte Design Promises Safer, Longer-Lasting Solid-State Lithium Batteries

Abstract Owing to their flexibility and cost-effectiveness, solid polymer electrolytes (SPEs) offer a promising alternative to inorganic solid electrolytes. Here, we present a highly oriented relaxor ferroelectric SPE based on a polyvinylid... Read More

Nov 26, 2025 By JooHyeon Heo Research
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Revolutionary CO₂ Conversion System Cuts Energy Use and Triples Formic Acid Production

The findings of this research have been published in Angew. Chem., Int. Ed. on October 10, 2025.

Revolutionary CO₂ Conversion System Cuts Energy Use and Triples Formic Acid Production

Abstract Electrochemical formate (HCOO−) production via CO2 reduction reaction (CO2RR) holds great promise for carbon-neutral energy systems; however, its practical implementation is significantly hindered by the high energy demand of anodi... Read More

Nov 24, 2025 By JooHyeon Heo Research
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Innovative Ionic TE Film Uses Body Heat to Power LED Lights

The findings of this research were published online in Advanced Functional Materials on October 4, 2025.

Innovative Ionic TE Film Uses Body Heat to Power LED Lights

Abstract Ionic thermoelectric (TE) materials offer great promise for self-powered wearable electronics due to their ability to convert low-grade heat into electricity with ultrahigh thermovoltages. However, their performance remains limited... Read More

Nov 21, 2025 By JooHyeon Heo Research
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Nine UNIST Researchers Named Among the World’s Most Highly Cited Researchers for 2025

Nine UNIST researchers named to Clarivate’s 2025 Highly Cited Researchers list—an increase of two from 2024.

Nine UNIST Researchers Named Among the World’s Most Highly Cited Researchers for 2025

Nine faculty members from UNIST have been named to the prestigious Highly Cited Researchers (HCR) 2025 list, compiled by Clarivate Analytics—an increase of two from 2024—positioning UNIST as South Korea’s second-highest-ranked institu... Read More

Nov 20, 2025 By JooHyeon Heo News
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UNIST Launches UEPS 2025, Uniting Global Pioneers in Electrochemical Energy Innovation

The inaugural 'UNIST Electrochemistry Pioneer Symposium 2025' took place at the Main Auditorium of UNIST from November 13 to 14, 2025.

UNIST Launches UEPS 2025, Uniting Global Pioneers in Electrochemical Energy Innovation

UNIST successfully brought together world-renowned scientists, industry innovators, and emerging scholars for the ‘1st UNIST Electrochemistry Pioneer Symposium (UEPS 2025),’ held at UNIST from November 13 to 14, 2025. Under the... Read More

Nov 19, 2025 By JooHyeon Heo News
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Blocking Oxygen Sources to Prevent Battery Aging—Long-Range EV Batteries Last 2.8 Times Longer↑

The findings of this research have been published in the online version of Advanced Energy Materials on October 5, 2025.

Blocking Oxygen Sources to Prevent Battery Aging—Long-Range EV Batteries Last 2.8 Times Longer↑

Abstract High-voltage operation of Ni-rich layered cathodes in lithium-ion batteries (LIBs) induces oxygen redox reactions, leading to singlet oxygen evolution, interfacial degradation, and electrolyte decomposition. While cathode engineeri... Read More

Nov 14, 2025 By JooHyeon Heo Research
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UNIST Unveils Eco-Friendly, Self-Driving PO Production System Using In-House Generated H2O2

The findings of this research have been published in the online version of Nature Communications on September 30, 2025.

UNIST Unveils Eco-Friendly, Self-Driving PO Production System Using In-House Generated H2O2

Abstract Propylene oxide (PO) is a key industrial chemical, often produced by epoxidizing propylene with H2O2 over titanium silicalite-1. However, current H2O2 production via the anthraquinone process relies on fossil-derived hydrogen, lead... Read More

Oct 31, 2025 By JooHyeon Heo Research
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