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The role of surface energies and chemical potential during nanowire growth

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Abstract

We present an approach to quantitatively determine the magnitudes and the variation of the chemical potential in the droplet (¿µ), the solid-liquid (¿SL) and the liquid-vapor (¿LV) interface energies upon variation of the group III partial pressure during vapor-liquid-solid-growth of nanowires. For this study, we use GaP twinning superlattice nanowires. We show that ¿LV is the quantity that is most sensitive to the Ga partial pressure (pGa), its dependence on pGa being three to four times as strong as that of ¿SL or ¿µ, and that as a consequence the surface energies are as important in determining the twin density as the chemical potential. This unexpected result implies that surfactants could be used during nanowire growth to engineer the nanowire defect structure and crystal structure.
Original languageEnglish
Pages (from-to)1259-1264
JournalNano Letters
Volume11
Issue number3
DOIs
Publication statusPublished - 2011

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