A Low Temperature Structural Transition in Canfieldite, Ag<sub>8</sub>SnS<sub>6</sub>, Single Crystals
ORAL
Abstract
We report the solution growth of single crystals of Ag8SnS6 (Canfieldite) from a Ag-Sn-S melt. On cooling from high temperature, Ag8SnS6 undergoes a known cubic (F-43m) to orthorhombic (Pna21) transition at 460 K. Here, we discover a second structural transition at 120 K (on warming). Single crystal X-ray diffraction shows the low temperature phase adopts a different orthorhombic structure with space group Pmn21 that is isostructural to the room temperature forms of the related compounds Ag8SnSe6 and Ag8GeSe6. The 120 K transition is first-order with large thermal hysteresis. We find the room temperature polymorph can be kinetically arrested into a metastable state by fast cooling to temperatures below 40 K. We lastly compare the room and low temperature forms of Ag8SnS6 with its analogues, Ag8TQ6 (T = Si, Ge, Sn; Q = S, Se), and identify a trend relating the preferred structures to the unit cell volume, suggesting smaller volume favors the Pna21 arrangement.
*Work at Ames Laboratory was supported by the U.S. DOE (Basic Energy Science) under the contract (DE-AC02-07CH1135). TJS was also supported by the Center for Advancement of Topological Semimetals (CATS) EFRC and by the Gordon and Betty Moore Foundation (GBMF4411). JVZ was funded by the NSF (DMR 1944551).
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Publication: T. J. Slade, V. Gvozdetskyi, J. M. Wilde, A. Kreyssig, E. Gati, L. Wang, Y. Mudryk, R. A. Ribeiro, V. K. Pecharsky, J. V. Zaikina, S. L. Budko, P. C. Canfield. A Low Temperature Structural Transition in Canfieldite, Ag8SnS6, Single Crystals. arXiv:2110.07508
Presenters
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Paul C Canfield
- Iowa State University
- Ames Laboratory and Department of Physics, Iowa State University
- Ames Laboratory/Iowa State University