Microscopic origin of bipolar resistive switching of nanoscale titanium oxide thin films

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Abstract

We report a direct observation of the microscopic origin of the bipolar resistive switching behavior in nanoscale titanium oxide films. Through a high-resolution transmission electron microscopy, an analytical transmission electron microscopy technique using energy-filtering transmission electron microscopy, and an in situ x-ray photoelectron spectroscopy, we demonstrated that the oxygen ions piled up at the top interface by an oxidation-reduction between the titanium oxide layer and the top Al metal electrode. We also found that the drift of oxygen ions during the on/off switching induced the bipolar resistive switching in the titanium oxide thin films. © 2009 American Institute of Physics.

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Jeong, H. Y., Lee, J. Y., Choi, S. Y., & Kim, J. W. (2009). Microscopic origin of bipolar resistive switching of nanoscale titanium oxide thin films. Applied Physics Letters, 95(16). https://doi.org/10.1063/1.3251784

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