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Defect induced p-type conductivity in zinc oxide at high temperature: electron paramagnetic resonance spectroscopy.

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High-temperature electron paramagnetic resonance (EPR) measurements were applied to a ZnO nanocrystalline (50 nm) sample, synthesized via a solid co-precipitation method, in order to understand the behavior of intrinsic defect… Click to show full abstract

High-temperature electron paramagnetic resonance (EPR) measurements were applied to a ZnO nanocrystalline (50 nm) sample, synthesized via a solid co-precipitation method, in order to understand the behavior of intrinsic defect centers at high temperatures. It has been observed that the defect centers on the surface play a crucial role in the conductivity behavior of ZnO. Above 300 °C only surface defects can be visible in EPR spectra for ZnO nanocrystals which indicate p-type conductivity.

Keywords: paramagnetic resonance; electron paramagnetic; high temperature; conductivity; spectroscopy; temperature electron

Journal Title: Nanoscale
Year Published: 2017

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