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- W1993096779 abstract "Monolayer-thick coatings have a significant effect on the fracture strength and durability of 210-nm-thick, smooth (∼0.4nm rms roughness), single crystal silicon nanobeams. The initial Weibull fracture strength of beams terminated with a methyl (CH3) monolayer was 18.2GPa. This strength did not degrade after a 23-day exposure to air. In contrast, beams terminated with a monolayer of hydrogen atoms were initially weaker than methyl-terminated beams, and their strength degraded rapidly in air. After a 23-day air exposure, the strength of H-terminated beams was reduced by at least 30%. Since strength durability is correlated with the oxidation resistance of the monolayers, the degradation of H-terminated beams is attributed to the formation of oxide nuclei that act as local stress concentrators." @default.
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- W1993096779 date "2006-12-04" @default.
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- W1993096779 title "Methyl monolayers improve the fracture strength and durability of silicon nanobeams" @default.
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- W1993096779 doi "https://doi.org/10.1063/1.2400180" @default.
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