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    • Twisted Bilayer MOFs Enable Customized Moiré Length Scales, Paving the Way for Advances in Twistronics and Quantum Materials 59 mins ago
    • New Catalyst Developed to Efficiently Reduce NOx Across a Wide Temperature Range 5 hours ago
    • Successful Completion of the Third Industry-Academic Convergence Forum Focused on Space and Marine Industries 2 weeks ago
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    • Successful Completion of the Third Industry-Academic Convergence Forum Focused on Space and Marine Industries 2 weeks ago
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Home Nature Communications

Achieving Volatile Potassium Promoted Ammonia Synthesis via Mechanochemistry

Their findings have been published in the April 2023 issue of Nature Communications

Achieving Volatile Potassium Promoted Ammonia Synthesis via Mechanochemistry

Abstract Potassium oxide (K2O) is used as a promotor in industrial ammonia synthesis, although metallic potassium (K) is better in theory. The reason K2O is used is because metallic K, which volatilizes around 400 °C, separates from the cat... Read More

Apr 30, 2023 By JooHyeon Heo Research
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Benchmarking Integration of Single-cell Differential Expression

Their findings have been published in the March 2023 issue of Nature Communications.

Benchmarking Integration of Single-cell Differential Expression

Abstract Integration of single-cell RNA sequencing data between different samples has been a major challenge for analyzing cell populations. However, strategies to integrate differential expression analysis of single-cell data remain underi... Read More

Apr 14, 2023 By JooHyeon Heo Research
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Atomic Transistors Based on Seamless Lateral Metal-semiconductor Junctions with Sub-1-nm Transfer Length

Their findings have been published in the August 2022 issue of Nature Communications.

Atomic Transistors Based on Seamless Lateral Metal-semiconductor Junctions with Sub-1-nm Transfer Length

Abstract The edge-to-edge connected metal-semiconductor junction (MSJ) for two-dimensional (2D) transistors has the potential to reduce the contact length while improving the performance of the devices. However, typical 2D materials are the... Read More

Oct 28, 2022 By JooHyeon Heo Research
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Structural Basis for Mitoguardin-2 Mediated Lipid Transport at ER-mitochondrial Membrane Contact Sites

Their findings have been published in the June 2022 issue of Nature Communications.

Structural Basis for Mitoguardin-2 Mediated Lipid Transport at ER-mitochondrial Membrane Contact Sites

Abstract The endoplasmic reticulum (ER)-mitochondria contact site (ERMCS) is crucial for exchanging biological molecules such as phospholipids and Ca2+ ions between these organelles. Mitoguardin-2 (MIGA2), a mitochondrial outer membrane pro... Read More

Aug 03, 2022 By JooHyeon Heo Research
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UNIST to Develop New Electrolyte Additives for High-energy-density LIBs

Their findings have been published in the February 2021 issue of Nature Communications.

UNIST to Develop New Electrolyte Additives for High-energy-density LIBs

A joint research team, affiliated with UNIST has unveiled a novel electrolyte additive that could enable a long lifespan and fast chargeability of high-energy-density lithium-ion batteries (LIBs). Published in the February 2021 issue of Nat... Read More

Mar 11, 2021 By JooHyeon Heo Research
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A Strategy Towards the Synthesis of Various 2D Materials

The work by Distinguished Professor Feng Ding has been appeared in Nature Communications on November 17, 2020.

A Strategy Towards the Synthesis of Various 2D Materials

Two-dimensional (2D) nanomaterials, such as graphene, hexagonal boron nitride, and molybdenum disulfide, hold great potential for building next-generation high-performance electronics. To realize the maximized performance of the 2D material... Read More

Dec 28, 2020 By JooHyeon Heo Research
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Universal Three-dimensional Crosslinker for All-photopatterned Electronics

Their findings have been published in the online version of Nature Communications on March 23, 2020.

Universal Three-dimensional Crosslinker for All-photopatterned Electronics

A technology to lower the production cost of electronic devices, such as large-area OLEDs that make large TVs has been developed. Instead of expensive vacuum equipment, this technique uses a series of solution processes for the production o... Read More

Apr 02, 2020 By JooHyeon Heo Research
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New Electrocatalyst for Hydrogen Production with Enhanced Faradaic Efficiency

Their findings have been published in Nature Communications on March 9, 2020.

New Electrocatalyst for Hydrogen Production with Enhanced Faradaic Efficiency

Researchers throughout the world are working actively to accelerate the development of new catalysts that can greatly cut the cost of hydrogen production. A number of breakthrough catalysts have been reported, yet their expected performance... Read More

Mar 31, 2020 By JooHyeon Heo Research
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Super-resolution at All Scales with Active Thermal Detection

The work by Distinguished Professor François Amblard's team has been published in Nature Communications.

Super-resolution at All Scales with Active Thermal Detection

An international team of researchers, affiliated with UNIST, has unveiled a new concept of super-resolved detection and imaging, applicable to microscopy, RADAR,LIDAR, and more. This breakthrough has been led by Distinguished Professor Fran... Read More

Dec 31, 2019 By Dahee Carol Kim Research
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Form as Casting Templates for Simple and Low-cost Nanopatterning

Their findings have been published in Nature Communications on July 19, 2019.

Form as Casting Templates for Simple and Low-cost Nanopatterning

A new patterning technique based on the natural liquid foam systems, observed in soap, beer, and even embryogenesis, has been developed. Their findings provide a simple and low-cost patterning method for fabricating fine patterns on the sub... Read More

Aug 17, 2019 By JooHyeon Heo Research
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