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The device was characterized and can potentially be used as a nanosensor.
The device was characterized theoretically, modeled using finite element analysis and tested experimentally.
Electrochemical studies of ASSTFS device was characterized by cyclic voltammetry, charge discharge and impedance techniques.
The device was characterized electrically using gold nanoparticles as an artificial analyte with both DC and AC measurement methods.
The device was characterized using electrochemical experiments such as cyclic voltammetry, impedance spectroscopy and potential transient measurements.
The device was characterized under various pHs as well as enzymatic reaction catalyzed by horseradish peroxidase (HRP) immobilized on the PANI/DNNSA functionalized floating-gate sensing surface.
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The motional resistance of the new device is characterized analytically and validated using 3D-multiphysics simulation.
The two-pump device is characterized by four parametric bands that can be used for flexible, unimpaired signal conversion.
The device is characterized and numerically analyzed using the finite-element-method at the wavelengths of 1.55 μm.
The functions of the fabricated multi-chip neural interface device were characterized and the feasibility of the device as a random-access, multi-site stimulator was demonstrated.
Typical measurements show that the step response of the device is characterized by three distinct non-linear regimes (double-sided impact, single-sided impact, and no-impact).
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