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A new chemical bath method for deposition of manganese(II) carbonate thin film on electroconductive FTO glass substrates is designed.
This structure, compatible with glass substrates, is designed to have up to 4 teeth and enables to get a high channel width W with a short channel length L. The channels of TFTC are made of a non-intentionally doped (NID) polysilicon layer between two in situ heavily-doped polysilicon layers; all these three layers are deposited by low pressure chemical vapor deposition (LPCVD) method.
Microfabricated substrates locally restrict TCR clusters translocation (Fig. 4A inset) and show no direct perturbations to unligated molecules, as the height of chromium stripes on glass substrates is designed to match the thickness of the lipid bilayer (about 5 nm).
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Substrates were designed to better control collagen adsorption and assembly.
A special flow cell for conformal coating of the perforated substrates was designed.
Multi-chip module (MCM) substrates are designed for packing two or more semiconductor chips.
Ag and Cu coplanar waveguides on silicon substrates were designed, fabricated and tested.
These substrates were designed to allow for a distinction between competing courses of the reaction.
The sequences of the used substrates were designed according to literature data for being specific for 10 of the caspases.
In this work, thermochromic Cr2O3/VO2/SiO2 (CVS) sandwich structures on glass substrates were designed and fabricated by magnetron sputtering method.
A very simple and effective testing method for studying the AKD migration behavior through these substrates was designed.
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CEO of Professional Science Editing for Scientists @ prosciediting.com