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Promising electrode polarization has been demonstrated based on the titanate with nickel nanoparticles and the Faraday efficiency is improved for the direct CO2 electrolysis at high temperatures.
A theoretical understanding of the formation of graded structures has been demonstrated based on the kinetic model of liquid-phase sintering, which is considered to be driven by both capillary and centrifugal forces.
All-optical logic gates with bacteriorhodopsin (bR) protein molecules have been demonstrated based on all-optical switching of a cw probe laser beam by multiple pulsed pump laser beams due to nonlinear intensity-induced excited-state absorption.
Mechanically bendable energy storage devices have been demonstrated based on a lift-off and liquid densification process to construct carbon nanotube (CNT) forests with built-in bottom metal electrodes on top of a flexible substrate.
High optical quality of these structures has been demonstrated based on the observation of intense photoluminescence (PL) emission from a single NW[13].
A flexible 4 × 4 sensor array with 16 micro-scale capacitive units has been demonstrated based on flexible piezoelectric poly vinylidene fluoride) (PVDF) film.
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The underlying physical mechanisms critical to the device design are demonstrated based on very fast transmission line pulsing (VFTLP) measurement and physics-based simulation results.
Non-inferiority is to be demonstrated based on a one-sided confidence interval with significance level of 2.5% for the difference between the two treatment arms.
An electro-optical modulator is demonstrated based on Fano-resonance effect in an out-of-plane illumination of one-dimensional slab photonic crystal composed of two graphene layers.
The approach is demonstrated based on an industrial example, the control software of an electro-mechanical braking system.
Mechanisms associated with the distinct memory effect were demonstrated based on the molecular simulation.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com