<P>The present study shows that nanometer-scale amorphous phase separation occurs by spinodal decomposition of the undercooled liquid in a melt-spun Al<SUB>60</SUB>Ge<SUB>30</SUB>Mn<SUB>10</SUB> alloy, althoug...
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https://www.riss.kr/link?id=A107519083
Kim, K.C. ; Park, S.H. ; Na, M.Y. ; Chang, H.J. ; Kim, W.T. ; Mattern, N. ; Eckert, J. ; Yokoyama, Y. ; Kim, K.B. ; Kim, D.H.
2015
-
SCI,SCIE,SCOPUS
학술저널
49-52(4쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
<P>The present study shows that nanometer-scale amorphous phase separation occurs by spinodal decomposition of the undercooled liquid in a melt-spun Al<SUB>60</SUB>Ge<SUB>30</SUB>Mn<SUB>10</SUB> alloy, althoug...
<P>The present study shows that nanometer-scale amorphous phase separation occurs by spinodal decomposition of the undercooled liquid in a melt-spun Al<SUB>60</SUB>Ge<SUB>30</SUB>Mn<SUB>10</SUB> alloy, although there is no atomic pair with positive enthalpy of mixing. By adopting a proper de-alloying process, an interconnected nano-porous germanium oxide with an amorphous structure is successfully synthesized. The present study shows that nano-porous amorphous germanium oxide can be easily obtained by de-alloying of Al-based amorphous alloys with nm-scale composition fluctuation.</P>
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