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In this work, we employed transient surface photovoltage (SPV) to monitor the response of the surface electronic structure of PS to the change of ambience.
Both the linear and the non-linear response of the surface electrons to an electrostatic field have been calculated.
The topography and the magnetic response of the surface were investigated by Atomic and Magnetic Force Microscopy (AFM/MFM).
The correlations between the response of the surface functionality of pristine and oxidized multiwalled carbon nanotubes and electrical double layer (EDL) forming at different ionic environments in the vicinity of a nanotube surface were determined.
Moreover, in vitro adhesion experiments with irradiated samples have shown that bacterial adhesion is reduced in relation to non-irradiated samples while the excellent response of the surface toosteoblast adhesiveness and proliferation is maintained [27].
This work is aimed to determine the correlation between the response of the surface functionality of pristine and oxidized multiwalled carbon nanotubes and EDL forming at different ionic environment in the vicinity of the nanotube surface.
Similar(48)
The sensor relies on monitoring changes in the intrinsic electrooxidation response of the surface-confined DNA resulting from its interaction with platinum compounds and requires no label or indicator.
The atomic mechanisms corresponding to the observed frictional response of the surfaces are explained by dislocation nucleation and propagation in the system.
It is based on the balance between a high-energy oxidation state and an electrostatic screening-response of the surface (image charge).
We present a Surrogate (semi-empirical) model for prediction of cellular response to the surfaces of biodegradable polymers that have been designed for tissue engineering applications.
The changes in the Volta potential maps were correlated to the macro-electrochemical responses of the surfaces and the microstructural features that evolve as a result of brazing.
More suggestions(15)
response of the atmosphere
response of the earth
relief of the surface
response of the superficial
response of the coating
reaction of the surface
reflection of the surface
response of the water
response of the area
response of the above ground
response of the sensor
response of the foam
response of the plant
response of the m
response of the filter
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