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In oxide glasses containing transition-metal ions, for instance, it is believed that electronic conductivity occurs as the hopping of an electron between two transition-metal ions of differing valence that are separated by an oxygen atom.
The transfer of electron between same/different elements having different states is called hopping.
Chemisorption process involved a sharing of electron between the adsorbate and the surface of adsorbent.
To mediate electron between the TiO2 photoelectrode and the platinum counter electrode, electrolyte containing I−/( {text{I}}_{3}^ ) redox ions is used to fill the cell.
As shown in the SEM images of the anode materials (in Fig. 2), the VGCF forms a conductive network that guarantees the transmission of electron between particles.
The mediator having oxidation reduction activity receives an electron from the cells and shuttles the electron between the electron acceptor and the electrode.
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This creates a flow of electrons between the metals that eventually causes them to disintegrate.
Hopping of electrons between the two states of Cr ions yields high conductivity, especially at elevated temperatures.
Exchange may be imagined as a continual jumping back and forth or interchange of the electrons between two possible states.
The study of processes in solutions has been less stressed, but the study of the transfer of electrons between metals and solution has increased explosively.
The reactivity of a molecule increases if it contains one or more weak bonds or bonds that have an unequal distribution of electrons between the two atoms.
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