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The full-wave rectification characteristics are demonstrated with square, sinusoidal, and white noise input waveforms.
This single-pore membrane exhibits current rectification characteristics because of the ionized carboxylate groups on the pore surface.
Current versus voltage (I V) measurements showed that sputter deposition of the Schottky contact yields diodes with a reduced barrier height and poor rectification characteristics.
It was found that the obtained TiO2/CuSCN heterojunction exhibited good rectification characteristics, indicating that an intimate electrical contact was formed between the large internal surface of TiO2 film and CuSCN.
At low concentrations and acidic conditions, an inversion in the current rectification characteristics is observed, which is attributed to the adsorption of the organic cations on the pore surfaces.
By virtue of the formation of Schottky barrier, excellent rectification characteristics are observed (Figure5a).
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It was still a great challenge to design high performance of rectification characteristic for the rectifier diode.
Moreover, a good rectification characteristic and transparent in the visible light range was obtained in the device.
In addition, the GBM Schottky diode showed more excellent rectification characteristic than that of GM Schottky diode due to the interfacial band bending caused by the epitaxial electric field.
Based on the electronic band structure, we analyzed the relationship between the electronic structure and the nature of the Schottky rectifier, and revealed the potential of utilizing GBM Schottky diode for the higher rectification characteristic devices.
The I V curve (Figure 5b) of the LED shows an excellent rectification characteristic.
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