Lazarevicite-type short-range ordering in ternary III-V nanowires

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Abstract

Stabilizing ordering instead of randomness in alloy semiconductor materials is a powerful means to change their physical properties. We used scanning tunneling and transmission electron microscopies to reveal the existence of an unrecognized ordering in ternary III-V materials. The lazarevicite short-range order, found in the shell of InAs1-xSbx nanowires, is driven by the strong Sb-Sb repulsion along (110) atomic chains during their incorporation on unreconstructed {110} sidewalls. Its spontaneous formation under group-III-rich conditions of growth offers the prospect to broaden the limited classes of ordered structures occurring in III-V semiconductor alloys.

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Schnedler, M., Lefebvre, I., Xu, T., Portz, V., Patriarche, G., Nys, J. P., … Grandidier, B. (2016). Lazarevicite-type short-range ordering in ternary III-V nanowires. Physical Review B, 94(19). https://doi.org/10.1103/PhysRevB.94.195306

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