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Growth of millimeter-sized high-quality CuFeSe single crystals by the molten salt method and study of their semiconducting behavior

arXiv:2308.08223 · doi:10.1016/j.jcrysgro.2023.127398

Abstract

An eutectic AlCl/KCl molten salt method in a horizontal configuration was employed to grow millimeter-sized and composition homogeneous CuFeSe single crystals due to the continuous growth process in a temperature gradient induced solution convection. The typical as-grown CuFeSe single crystals in cubic forms are nearly 1.61.21.0 mm3 in size. The chemical composition and homogeneity of the crystals was examined by both inductively coupled plasma atomic emission spectroscopy and energy dispersive spectrometer with Cu:Fe:Se = 0.96:1.00:1.99 consistent with the stoichiometric composition of CuFeSe. The magnetic measurements suggest a ferrimagnetic or weak ferromagnetic transition below T = 146 K and the resistivity reveals a semiconducting behavior and an abrupt increase below T.

Growth of millimeter-sized high-quality CuFeSe$_2$ single crystals by the molten salt method and study of their semiconducting behavior · wovepaper