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- W2029144580 abstract "The method of isotopic substitution in neutron diffraction is used to measure the metal-metal partial structure factor ${S}_{mathrm{MM}}(k)$ for the glassy fast ion conductor $gensuremath{-}mathrm{A}{g}_{2}mathrm{A}{s}_{3}mathrm{S}{e}_{4}$ and for the glassy semiconductor $gensuremath{-}mathrm{C}{u}_{2}mathrm{A}{s}_{3}mathrm{S}{e}_{4}$. The remaining partial structure factors are hence separated into two functions which comprise either the $Mensuremath{-}ensuremath{mu}(ensuremath{mu}=mathrm{As}mathrm{or}mathrm{Se})$ or $ensuremath{mu}ensuremath{-}ensuremath{mu}$ species. It is found that the short range order of the network former $gensuremath{-}mathrm{A}mathrm{s}mathrm{S}mathrm{e}$ is not destroying on alloying with ${M}_{2}mathrm{Se}$ and that the most significant structural differences occur with respect to the $M$ atom ordering." @default.
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- W2029144580 date "1994-07-11" @default.
- W2029144580 modified "2023-10-16" @default.
- W2029144580 title "Structure of Fast Ion Conducting and Semiconducting Glassy Chalcogenide Alloys" @default.
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- W2029144580 doi "https://doi.org/10.1103/physrevlett.73.264" @default.
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