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Interface engineering for the improved injection properties of all-solution-processed n-type organic field-effect transistors (OFETs) arising from the use of an inkjet-printed ZnO electron injection layer were demonstrated.
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First, the determination of the depth profile of the band gap energy Eg in the absorber layer is demonstrated.
A strong effect of the DTAC/SPS molar ratio for roughness and waviness of the copper electrodeposited layer was demonstrated.
The amorphous layer was demonstrated by electrochemical impedance to show a block effect on increasing the interfacial resistance.
The as-formed amorphous Fe2O3 layer is demonstrated to significantly improve the kinetics behavior of lithium-ion diffusion and electronic transport due to its isotropic feature during cycling.
In this paper the importance of a new design variable for high power anti-serial Schottky varactors, the aluminum composition of the AlGaN barrier layer, is demonstrated.
Mass transport through the films and especially between each layer is demonstrated by cyclic voltammetry using a redox probe in solution.
Although the MAO layer was demonstrated to improve the interfacial compatibility between the hard coating and the soft substrate, a compact and dense hard coating is still essential to ensure the corrosion and wear resistance of Mg alloys.
In order to achieve the enhancement and manipulation of light absorption in graphene monolayer within the visible (Vis) and near infrared (NIR) regions, a design of absorber inspired by contact coupled gratings with an absentee layer is demonstrated.
An innovative tunable photovoltaic electrochromic (PV EC) device concept, in which planar distribution of silicon thin film solar cells (Si-TFSCs) structure with successively deposited electrochromic thin films (ECTFs) and electrolyte layer is demonstrated.
The approximate equivalence between the self-generated wave and that induced by external excitation of the corresponding non-impinging shear layer is demonstrated by comparing amplitude and phase distributions.
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CEO of Professional Science Editing for Scientists @ prosciediting.com