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Structural, surface, and theoretical investigation of hydrophobicmodified nanodiamond powders

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dc.contributor.author Kydyrbay, Nazerke
dc.contributor.author Zhazitov, Mergen
dc.contributor.author Abdullah, Muhammad
dc.contributor.author Duisebayev, Tolagay
dc.contributor.author Tezekbay, Yerbolat
dc.contributor.author Aldongarov, Anuar
dc.contributor.author Karibayev, Mirat
dc.contributor.author Nuraje, Nurxat
dc.contributor.author Toktarbaiuly, Olzat
dc.date.accessioned 2026-03-02T05:59:12Z
dc.date.available 2026-03-02T05:59:12Z
dc.date.issued 2025
dc.identifier.issn 2045-2322
dc.identifier.other doi.org/10.1038/s41598-025-10027-9
dc.identifier.uri http://repository.enu.kz/handle/enu/29585
dc.description.abstract Nanodiamonds (NDs) have received much attention in science and technology due to their superior structural and functional characteristics. In this study, NDs were successfully functionalized with Triethoxy(octyl)silane (TREOS) to make them superhydrophobic. Surface functionalization was carried out through hydrolysis and condensation reactions to create stable Si–O–C and Si–O–Si bonds. Characterization techniques like Raman spectroscopy, XRD, SEM, FTIR, and water contact angle measurements confirmed the structural integrity and efficient functionalization of the functionalized NDs. The observed superhydrophobicity with a 151° contact angle is understandable based on both silane functionalization and nanoscale surface roughness. These observations suggest the prospects of TREOS-modified NDs for use in waterproof coatings, self-cleaning surfaces, and anti-corrosion materials. Furthermore, the excellent dispersion of hydrophobic NDs in nonpolar solvents reveals that they can be applied in lubrication and anti-wear. Future efforts would be the further improvement of ND surface modification and its application in practical products, e.g., protective coatings, biomedical devices, and high-performance nanocomposites. ru
dc.language.iso en ru
dc.publisher Scientific Reports ru
dc.relation.ispartofseries 15:24329;
dc.title Structural, surface, and theoretical investigation of hydrophobicmodified nanodiamond powders ru
dc.type Article ru


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