Atom-thin materials: handle with care... and cling film
Kitchen cling film enables large, atom-thin material sheets to be transferred onto patterned surfaces without cracking, simplifying 2D device fabrication.
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Kitchen cling film enables large, atom-thin material sheets to be transferred onto patterned surfaces without cracking, simplifying 2D device fabrication.
MIT researchers, together with collaborators from Harvard University, Rice University, Yale University, MIT Lincoln Laboratory and Pohang University in South Korea, have developed...
Two-dimensional superconductors have long been viewed as promising building blocks for next-generation quantum technologies, but their practical use has been limited by a stubborn...
Can a common mineral improve quantum materials? Researchers have replaced polymer-based assembly with mica to create cleaner atomic stacks for future electronics. Scientists from t...
A wafer-scale 2D semiconductor combines high hole mobility, strong stability and transistor performance, advancing next-generation CMOS electronics.
Researchers say the method could be used to develop next-generation devices used for accelerating research in quantum computing.
Can 2D semiconductors replace silicon? A new pilot line targets 5nm-equivalent chips without relying on EUV lithography by 2029. Shanghai-based semiconductor start-up Yuanjiwei has...
A 2D magnetic material exhibits a charge-ordered state in which electrons move collectively and unusually slowly while maintaining quantum coherence The post Two-dimensional materi...
A stable honeycomb borophene layer hosts strongly interacting electrons that form a quantum liquid crystal state, with potential for superconducting electronics.
Researchers at Peking University, led by Liu Kaihui, together with Suzhou Laboratory, ShanghaiTech University, Wuhan University and the Chinese Academy of Sciences' Institute of Ph...
MXenes—atomically thin transition metal carbides and nitrides—are drawing fresh attention for one simple reason: their surfaces are never truly bare. During production, the “...
Insider Brief PRESS RELEASE — University of Arizona researchers have demonstrated a promising new application for graphene nanoribbons, a nanoscale semiconductor material with the...
Could an ultrathin magnetic material change how future electronics handle data? A rare magnetic state could enable faster, lower-energy devices. Researchers at IIT Bhubaneswar and...
Insider Brief Quantum computing is often portrayed as a race to build better qubits, but this is just part of the bigger challenge. Beneath every qubit is an endeavor to find the r...
Researchers at the National University of Singapore, the Center for Neurophysics and Neuromorphic Technologies (Moscow), Queen's University (Kingston), HSE University (Moscow), the...
A new method could dramatically accelerate the production of MXenes, a family of two-dimensional materials widely regarded as promising candidates for next-generation energy techno...
A new compound fills the structural gap between known materials, linking crystal layer count to magnetic order and Dirac-like electronic bands.
A sublayer chemistry strategy creates new lanthanide MXenes that combine semiconducting behavior with low-temperature ferromagnetism in a single material.
Тайваньские учёные в сотрудничестве с инженерами TSMC разработали новый способ изготовления транзисторов на основе одноатомного слоя дисульфида молибдена (MoS₂), который позволяет...
Author(s): Efthimios KaxirasNew experiments suggest that superconductivity in twisted bilayer graphene depends on an unconventional electron-pairing mechanism.[Physics 19, 114] Pub...
A wafer scale porous graphene film shows room temperature ferromagnetism linked to zigzag edge spacing, with impurity measurements showing trace magnetic metals cannot explain the...
Researchers at Shenzhen University, the Japan Atomic Energy Agency, the National Institutes for Quantum Science and Technology (QST), the University of Tokyo, the University of Sci...
The Light That Refuses to Leak — Now Switched On With Electricity Some of the most stubborn light in physics is light that will not leave. Inside specially engineered surfaces, pho...
Researchers at Sweden's Uppsala University, working with beamline scientists at Synchrotron SOLEIL in France, have directly visualized how ultrathin metal-oxide layers reshape the...
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