Stress-Induced Domain Wall Motion in a Ferroelastic Mn(3+) Spin Crossover Complex

铁弹性Mn(3+)自旋交叉复合物中应力诱导畴壁运动

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Abstract

Domain wall motion is detected for the first time during the transition to a ferroelastic and spin state ordered phase of a spin crossover complex. Single-crystal X-ray diffraction and resonant ultrasound spectroscopy (RUS) revealed two distinct symmetry-breaking phase transitions in the mononuclear Mn(3+) compound [Mn(3,5-diBr-sal(2) (323))]BPh(4) , 1. The first at 250 K, involves the space group change Cc→Pc and is thermodynamically continuous, while the second, Pc→P1 at 85 K, is discontinuous and related to spin crossover and spin state ordering. Stress-induced domain wall mobility was interpreted on the basis of a steep increase in acoustic loss immediately below the the Pc-P1 transition.

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