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AZoNano on MSNGaseous-Mediated Exfoliation of MXenes for Improved TribovoltaicsA new gas-assisted electrochemical exfoliation method produces halogen-terminated MXenes with improved conductivity and wear ...
Innovative N-substituted MXenes synthesized with unmatched conductivity offer new solutions for electromagnetic interference ...
A research team has reported the successful synthesis of high-purity, tunable nitrogen (N)-substituted MAX precursors and the ...
Researchers announced the successful synthesis of high-purity, tunable nitrogen-substituted MAX precursors and the resultant ...
Green hydrogen is set to play an important role in the future energy system: it can be used for storing chemical energy, as a ...
An international team led by HZB chemist Michelle Browne conducted a rigorous investigation that demonstrated the potential ...
MXenes are flaky structures made of carbon and so-called transition metals. Catalytically active particles can adhere to the inner surfaces of MXenes, thereby enhancing their catalytic effect.
Abstract Broadband and ultrathin electromagnetic interference (EMI)-shielding materials are crucial for efficient high-frequency data transmission in ...
This behavior could be harnessed to create innovative optical memory technologies. MXenes are ultra-thin nanomaterials (about a hundred thousand times thinner than a human hair) created by selectively ...
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