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GaInN/GaN solar cells made without p-type material are demonstrated using an oxidized Ni/Au Schottky barrier design to collect photo-generated carriers.
Alternatively, fully CMOS-compatible slot modulators or plasmonic modulators using Si as an active material are demonstrated recently [4, 5], and the high localization of a light field in the modulator can be achieved.
Therefore, the feasibility and the advantages of the industrial manufacturing of mechanical components by isothermal forging from ECAP-processed material are demonstrated here as mechanical properties are achieved, as well as a better flow of the material and at a lower forging temperature.
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The material is demonstrated to be completely biocompatible which also recently was verified in an animal experimental study [21].
The plasticizing effect of water on this type of material was demonstrated by dynamic mechanical measurements.
A novel tuning method of temperature dependence of dielectric properties in Ba4Sm9.33Ti18O54 (BSmT) microwave material was demonstrated by texture engineering.
Furthermore, the hybrid material was demonstrated to upregulate the steady-state-expression of the cell migration-inducing chemokine SDF-1α.
The sensing design based on the Ppy Co3O4 hybrid material was demonstrated to be effective and promising in developing protein and enzyme biosensors.
An interesting and effective route for improving battery performance using ferroelectric poly vinylidene difluoride) (PVDF) polymer as a binder material is demonstrated in this work.
The accessibility of the MCNS-based active electrode material was demonstrated by simultaneous determination of dopamine, ascorbic acid, and uric acid at physiological pH.
Recently, AgBr material was demonstrated to be a new and efficient visible-light photocatalyst for the decomposition of various organic compounds.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com