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SCD substrates were successfully synthesized using an optimized pocket holder design.
A variety of substrates were successfully coated with thin polymer films for aesthetic/handling purposes or for delayed release applications such as taste masking.
In this paper, multi-chip LED modules with aluminum nitride (AlN), Al and aluminum oxide (Al2O3) based substrates were successfully designed, fabricated and investigated.
Highly adherent and compact copper coatings on steel substrates were successfully produced by electrodeposition using noncyanide bath based on glutamate as a complexing agent.
GaN-based light emitting diodes (LEDs) fabricated on sapphire substrates were successfully transferred onto silicon substrates using a double-transfer technique.
In the present work, TiO2 films with arrays of nanorods having flower blossom-like structure surfaces formed on fluorine-doped tin oxide (FTO) glass substrates were successfully obtained via two-step hydrothermal technique.
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The results show that porous and crack-free substrates are successfully obtained after sintering at 1450 °C for 5 h.
CeO2/ZnO nanotube array films grown on FTO substrates are successfully synthesized by a two-step electrodeposition process.
Two specified local regions of silver NPs in glass substrate were successfully fabricated: one in the middle of a line-shape microchannel and the other in the cross regions of two crossed microchannels.
45 wt%-Hydroxyaptite/polyetheretherketone (HA/PEEK) coating materials modified by silane coupling agent (KH560) on PEEK substrate were successfully fabricated by solution casting method and characterized by Fourier transform infrared spectroscopy (FTIR), X-Ray Diffraction (XRD), scanning electron microscopy (SEM), and tensile testing.
Friction vs. applied load data acquired on the films and the calcite substrate were successfully fitted to the Johnson Kendall Roberts (JKR) model for single asperity contacts.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com