UNIST Achieves Reversible Spin Splitting Effect in Altermagnetic RuO2 Thin Films

Abstract Spin-dependent anisotropic Fermi surfaces in altermagnets can give rise to nonrelativistic spin–charge conversion, known as the altermagnetic s..

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UNIST Unveils Ultra-Thin Materials to Boost Solar Hydrogen Production Efficiency

Abstract Effective charge extraction in organic semiconductor (OS)-based photoelectrochemical (organic PEC) cells is essential for achieving high-pe..

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Revolutionary Method Enables Rapid, Eco-Friendly Production of Multi-Metal Nanostructures Using CO2

Abstract Multielement nanostructures promise unusual properties but are constrained by crystalline frameworks limiting incorporable cations, and prev..

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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 Is Speeding the Process of Green Hydro..

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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; ..

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