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- W2069969138 abstract "We use atom-resolved scanning tunneling microscopy to evidence the formation of carbon atomic chains on the C-terminated $ensuremath{beta}ensuremath{-}mathrm{SiC}(100)$ surface. These carbon atom lines, which exhibit an extremely high thermal stability (up to $ensuremath{approx}1200ifmmode^circelsetextdegreefi{}mathrm{C}$), comprise buckled single bond $mathrm{C}---mathrm{C}$ dimers $({mathrm{sp}}^{3})$ having a direction perpendicular to the $mathrm{C}ensuremath{equiv}mathrm{C}$ triple bond dimers $(mathrm{sp})$ forming a $c(2ifmmodetimeselsetexttimesfi{}2)$ surface reconstruction. Their presence does not result in/or from surface antiphase boundaries, and their density increases with annealing time. The results suggest anisotropic (tensile and compressive) surface stress as a leading driving force in this carbon $mathrm{sp}ensuremath{rightarrow}{mathrm{sp}}^{3}$ diamondlike temperature controlled transformation." @default.
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- W2069969138 date "1998-12-28" @default.
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- W2069969138 title "Carbon Atomic Chain Formation on the<mml:math xmlns:mml=http://www.w3.org/1998/Math/MathML display=inline><mml:mi>β</mml:mi></mml:math>-SiC(100) Surface by Controlled<mml:math xmlns:mml=http://www.w3.org/1998/Math/MathML display=inline><mml:mi mathvariant=italic>sp</mml:mi><mml:mi /><mml:mo>→</mml:mo><mml:mi /><mml:mrow><mml:msup><mml:mrow><mml:mi mathvariant=italic>sp</mml:mi></mml:mrow><mml:mrow><mml:mn>3</mml:mn></mml:mrow></mml:msup></mml:mrow></mml:math>Transformation" @default.
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- W2069969138 doi "https://doi.org/10.1103/physrevlett.81.5868" @default.
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