Temperature-induced phase transition characteristics of [001]-oriented 0.93pb(zn1/3nb2/3)o3-0.07pbtio3 (pzn-7%pt) single crystal by using piezoresponse force microscopy

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Abstract

The evolution of the domain structures of [001]-oriented relaxor ferroelectric 0.93PbZn1/3Nb2/3O3-0.07PbTiO3 (PZN-7%PT) single crystals as a function of temperature was investigated in situ by using piezoresponse force microscopy (PFM). It was found that the local domain structure of PZN-7%PT single crystals at room temperature is rhombohedral with nanoscale twins. Temperature-dependent domain structures showed that the phase transition process is a collective process and that the sample underwent a sequence of rhombohedral (R) → monoclinic (Mc) → tetragonal (T) → cubic (C) phase transformations when the temperature increased from 25 °C to 170 °C. The results provide direct observation of the phase transition evolution of PZN-7%PT single crystals as a function of temperature, which is of great significance to fully understand the relation-ships between the domain structure and phase structure of PZN-7%PT single crystals.

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Wang, H., & Zeng, K. (2021). Temperature-induced phase transition characteristics of [001]-oriented 0.93pb(zn1/3nb2/3)o3-0.07pbtio3 (pzn-7%pt) single crystal by using piezoresponse force microscopy. Materials, 14(4), 1–10. https://doi.org/10.3390/ma14040855

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