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- W2004876159 abstract "We have investigated the stability and solidification of nanometer size Au-Si droplets using an ultrafast heating/cooling nanocalorimetry and in situ growth techniques. The liquid can be supercooled to very low temperatures for both Au-rich (ΔT ∼ 95 K) and Si-rich (ΔT ∼ 220 K) samples. Solidification of a unique metastable phase δ1 is observed with a composition of 74 ± 4 at. % Au and a b-centered orthorhombic structure (a = 0.92, b = 0.72, and c = 1.35 nm; body-center in the a-c plane), which grows heteroepitaxially to Aus. Its melting temperature Tm is 305 ± 5 °C. There is competition during formation between the eutectic and δ1 phases but δ1 is the only metastable alloy observed. For small size droplets, both the δ1 and eutectic phases show considerable depression of the melting point (size-dependent melting)." @default.
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- W2004876159 date "2012-05-01" @default.
- W2004876159 modified "2023-10-15" @default.
- W2004876159 title "Metastable phase formation in the Au-Si system via ultrafast nanocalorimetry" @default.
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- W2004876159 doi "https://doi.org/10.1063/1.4712342" @default.
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