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- W2488962806 abstract "Carbon thin films, having a combination of unique physical and chemical properties, exhibit an interesting biocompatibility and biological response to living entities. Here, the carbon films are developed in the morphology form of nano-domains with nanoscale inter-domain separations, tuned by plasma conditions in the facing target magnetron sputtering process. The wettability and surface energy are found to have a close relation to the inter-domain separations. The chemical structure of carbon films exhibited the relative enhancement of sp3 in comparison to sp2 with the increase of domain separations. The cell-viability of these films shows promising results for L929 mouse fibroblast and Saos-2 bone cells, when inter-domain separation is increased. Electrical conductivity and surface energy are identified to play the key role in different time-scales during the cell-proliferation process. The contribution from electrical conductivity is dominant in the beginning of the cultivation, whereas with the passage of time (~3–5 d) the surface energy takes control over conductivity to enhance the cell proliferation." @default.
- W2488962806 created "2016-08-23" @default.
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- W2488962806 date "2016-05-31" @default.
- W2488962806 modified "2023-09-27" @default.
- W2488962806 title "Role of surface-electrical properties on the cell-viability of carbon thin films grown in nanodomain morphology" @default.
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- W2488962806 doi "https://doi.org/10.1088/0022-3727/49/26/264001" @default.
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