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The fact that both the thermal and electrical properties depend on N allows us to establish a model that leads to a theoretical relationship between the thermal and electrical conductivity in our samples, which is general enough to be applied to a large class of graphene-based thin films.
Finally, we can not exclude the possibility that cytoskeletal elements might play a role in regulating the number of Eag1 channels and/or altering the subunit composition of the complexes that are labeled with a single QD in our study [30], Neuronal electrical properties depend on the activation of ion channels at the appropriate location within the neuron [2].
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The composites exhibit different microstructures with different electrical properties, depending on the processing parameters.
The nanotubes, having an extreme small physical size (diameter ≈1 nm) and many unique mechanical and electrical properties depending on its hexagonal lattice arrangement and chiral vector have been appreciated as ideal fibres for nanocomposite structures.
SWNTs have very unique electrical properties, depending on the chirality of the wrap, and they can behave as either metals or semiconductors [11, 12].
Again, graphene synthesized from reduced graphene oxides (RGOs) usually causes incomplete reduction of graphite oxide that results in the successive debasement of electrical properties depending on its degree of reduction.
It indicates that the electrical property depends not only on the component fractions, size, and shape but also on the porous structure: when intensively pressed, the pores are eliminated, leading to the enhancement of the electrical conductivity [30].
Low band gap iodide perovskite is expected to be a potential candidate for solar cell light harvester, however little attention has been paid to such a possibility because of being keen on change in electrical property depending on structural dimensionality reported in 1994 [3].
It is well know from six decades that metal oxide electrical property depends on the surrounding atmosphere.
The physical properties of ITO films such as microstructure, electrical and optical properties depend on the deposition methods and experimental conditions.
In the segregated composites, the percolation and electrical properties strongly depend on the junctions between tubes/fibers that are located only at interstitial spaces between polymer matrix particles.
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