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Emerson Coy

Researcher at Adam Mickiewicz University in Poznań

Publications -  154
Citations -  3466

Emerson Coy is an academic researcher from Adam Mickiewicz University in Poznań. The author has contributed to research in topics: Atomic layer deposition & Chemistry. The author has an hindex of 26, co-authored 131 publications receiving 1993 citations.

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Design of Boron Nitride/Gelatin Electrospun Nanofibers for Bone Tissue Engineering.

TL;DR: The cross-linked gelatin/BN ESM are nontoxic and biodegradable, and the analysis of osteoblast gene expression and the measurement of alkaline phosphatase activity confirm that these materials are suitable for bone tissue engineering.
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High-Performance Nanowire Hydrogen Sensors by Exploiting the Synergistic Effect of Pd Nanoparticles and Metal–Organic Framework Membranes

TL;DR: The fabrication of hydrogen gas sensors with enhanced sensitivity and excellent selectivity showed that the performance of gas sensors toward H2 gas can be greatly increased by both the addition of Pd NPs and the use of ZIF-8 coating, acting as a molecular sieve membrane.
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Highly efficient hydrogen sensors based on Pd nanoparticles supported on boron nitride coated ZnO nanowires

TL;DR: In this paper, a novel type of sensor device, based on ZnO nanowires (NWs) coated with a thin layer of boron nitride (BN) decorated with palladium nanoparticles (NPs) was proposed.
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Experimental and theoretical studies of the physicochemical and mechanical properties of multi-layered TiN/SiC films: Temperature effects on the nanocomposite structure

TL;DR: In this paper, the influence of temperature on the physicico-chemical and functional properties of TiN/SiC multilayers was studied, and the interstitial effects and rearrangements, between the TiN and SiC phases and their role in the enhanced mechanical response were investigated.
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Superhard CrN/MoN coatings with multilayer architecture

TL;DR: In this paper, the formation of microstructure and properties of multilayer nanostructured CrN/MoN films with periodically changing architecture of layers were considered, and the effect of deposition conditions (pN, Ub, λ) on composition, structure, hardness, toughness and wear resistance was studied to achieve superior mechanical and physical properties of coatings with long lifetime in harsh environment.