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In proliferation medium cell proliferation was higher and metabolic activity lower on Col-1 and PO substrates as compared to SF.
This leads to a considerable enhancement of the particle bombardment of the surface of the martensite steel substrates as compared to non-ferromagnetic substrates already at ground potential.
Peak broadening in X-ray diffraction patterns attributed to microstrain and particle size was observed for coatings on both types of substrates as compared to Ta powder.
Significant changes in cell number, morphology and function have been observed when mesenchymal stem cells (MSC) were cultured on ECM substrates as compared to standard tissue-culture polystyrene (TCPS).
Dermal fibroblast cells show excellent material interaction on the more hydrophobic samples (OH contents lower than 0.5), which reveals enhanced VN activity on this family of substrates as compared with other extracellular matrix proteins (e.g., fibronectin and fibrinogen).
Significantly enhanced Raman signature of R6G dyes were observed on AuNP/graphene substrates as compared to the case without graphene with an improvement factor of 400%, which is remarkably greater than previous results obtained in ex situ fabricated SERS substrate.
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Stable contact angle of water on NCP-based substrate as compared to that of pure NCP implies that a protective layer of acrylic resin has been successfully formed on the surface of NCP and water cannot permeate into inner NCP, exhibiting excellent waterproof capacity.
The proposed method results in utterly homogenous and mechanically stable coatings with excellent adhesion to the substrate as compared to the other commonly used solution-based methods.
The adsorbed NO has the largest energy difference between Fe-MG and Fe-BG substrate as compared with the other gases, as well as inducing the change in electronic structure and magnetic property of Fe-graphene systems.
This procedure resulted in 45 units/mg laccase activity (28% increase in activity of immobilized enzyme) measured using ABTS as substrate as compared to the other strategies used to immobilize laccase.
The results showed an improvement in high temperature oxidation performance of the Ni-P-BN(h) coating when it was applied on a Ni-P coated carbon steel substrate as compared to when it was directly applied on the carbon steel substrate.
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