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N-doped carbon materials are promising metal-free catalysts for a number of applications.
Such low band gap materials are promising for harvesting solar photons102.
Therefore, these materials are promising for fuel cell application.
Such MCo2S4 electrode materials are promising for the future generation of high performance supercapacitors.
Nitrogen doped carbon materials are promising oxygen reduction reaction (ORR) catalysts which could potentially replace platinum.
The newly developed membrane materials are promising for CO2 capture and other gas separation.
Nanosilicon materials are promising systems for the fabrication of single-electron transistor (SET) and memory devices in silicon.
The encouraging performance suggests that such nanomembrane-based materials are promising cathode architectures for the future Li O2 batteries.
The above investigation clearly indicates that the corncob derived carbon materials are promising for applications in supercapacitor.
The transition metal-containing N-doped carbon materials are promising cathode catalysts for low-temperature fuel cells.
The corresponding LER values obtained are less than 1nm, suggesting that such materials are promising for the fabrication of devices even down to the 32 nm node.
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CEO of Professional Science Editing for Scientists @ prosciediting.com