Improvement of Uniformity of Resistive Switching Parameters by Selecting the Electroformation Polarity in IrO<sub>x</sub>/TaO<sub>x</sub>/WO<sub>x</sub>/W Structure

Amit Prakash, S. Maikap, Chao‐Sung Lai, Heng Yuan Lee, Wen‐Shan Chen, Frederick T. Chen, M.-J. Kao, Ming Jinn Tsai

Japanese Journal of Applied Physics · 2012 · 16 citations · 36 references

Concepts

Abstract

A route to improve the uniformity of key resistive switching memory parameters such as SET/RESET voltages, low/high-resistance states as well as switching cycles is demonstrated in an IrO x /TaO x /WO x /W simple resistive memory stack by selecting the electroformation polarity. The various stack layers are confirmed by high-resolution transmission electron microscopy, energy dispersive X-ray spectroscopy, and X-ray photoelectron spectroscopy analyses. Cumulative probability plots of the key memory parameters show tight distribution. The oxygen vacancy filaments are formed/ruptured owing to polarity-dependent oxygen ion migration, which is the switching mechanism in the TaO x /WO x bilayers, and improved resistive switching parameters under positive formation polarity are observed. The fabricated device has shown good potential for multilevel capability with a low voltage operation of ±3 V. The device has shown an excellent read endurance of &gt;10 5 cycles and data retention up to 10 years at 85 °C.

References

36