MUMP 发表于 2025-3-23 10:42:54
Oxygen Interaction with Electronic Nanotubes,onductivity. A calculation, made by methods of quantum mechanics, indicate this may be chemical adsorption which has a partial free energy of >10 eV. Adsorption energy is big, so this phenomenon is not observed in practice. Analysis of experimental adsorption isotherms of oxygen and desorption thermemulsify 发表于 2025-3-23 13:54:36
Nitrogen Interaction with Carbon Nanotubes: Adsorption and Doping, a nitrogen atom depend on its place on the graphene lattice and on the closest neighboring particles. Nitrogen, which is located in the site of a graphene lattice, is a donor, however, if there is a vacancy nearby it becomes an acceptor. Processes of nitrogen interaction with the surface of nanotubBetween 发表于 2025-3-23 21:52:31
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https://doi.org/10.1007/978-3-658-37464-8n the book. It examines the interaction of gas molecules with the graphene lattice, discusses the differences between physical and chemical adsorption, as well as the differences between chemical adsorption and doping.Repatriate 发表于 2025-3-24 17:59:46
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Gesamtergebnis zur Untreuestrafbarkeitonductivity. A calculation, made by methods of quantum mechanics, indicate this may be chemical adsorption which has a partial free energy of >10 eV. Adsorption energy is big, so this phenomenon is not observed in practice. Analysis of experimental adsorption isotherms of oxygen and desorption thermeardrum 发表于 2025-3-25 00:39:35
Ergebniszusammenführung zur Phänomenologie a nitrogen atom depend on its place on the graphene lattice and on the closest neighboring particles. Nitrogen, which is located in the site of a graphene lattice, is a donor, however, if there is a vacancy nearby it becomes an acceptor. Processes of nitrogen interaction with the surface of nanotub