Correlative theoretical and experimental investigation of the formation of AlYB{sub 14} and competing phases

The phase formation in the boron-rich section of the Al-Y-B system has been explored by a correlative theoretical and experimental research approach. The structure of coatings deposited via high power pulsed magnetron sputtering from a compound target was studied using elastic recoil detection analy...

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Veröffentlicht in:Journal of applied physics 2016-02, Vol.119 (8)
Hauptverfasser: Hunold, Oliver, Chen, Yen-Ting, Music, Denis, Baben, Moritz to, Achenbach, Jan-Ole, Keuter, Philipp, Schneider, Jochen M., Persson, Per O. Å., Primetzhofer, Daniel
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Sprache:eng
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Zusammenfassung:The phase formation in the boron-rich section of the Al-Y-B system has been explored by a correlative theoretical and experimental research approach. The structure of coatings deposited via high power pulsed magnetron sputtering from a compound target was studied using elastic recoil detection analysis, electron energy loss spectroscopy spectrum imaging, as well as X-ray and electron diffraction data. The formation of AlYB{sub 14} together with the (Y,Al)B{sub 6} impurity phase, containing 1.8 at. % less B than AlYB{sub 14}, was observed at a growth temperature of 800 °C and hence 600 °C below the bulk synthesis temperature. Based on quantum mechanical calculations, we infer that minute compositional variations within the film may be responsible for the formation of both icosahedrally bonded AlYB{sub 14} and cubic (Y,Al)B{sub 6} phases. These findings are relevant for synthesis attempts of all boron rich icosahedrally bonded compounds with the space group: Imma that form ternary phases at similar compositions.
ISSN:0021-8979
1089-7550
DOI:10.1063/1.4942664