Configurations of a chemically ordered continuous random network to describe the structure of GeSe2 glass

Robert Nemanich, F. L. Galeener, J. C. Mikkelsen, G. A N Connell, George Etherington, Adrian C. Wright, Roger N. Sinclair

Research output: Contribution to journalArticle

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Abstract

It is proposed that the structure of GeSe2 glass is characterized by a chemically ordered continuous random network. Within this context it is suggested that 4-atom planar rings exist and can explain an unusual feature in the Raman spectrum. Neutron scattering data are presented which supportthis model.

Original languageEnglish (US)
Pages (from-to)959-961
Number of pages3
JournalPhysica B+C
Volume117-118
Issue numberPART 2
DOIs
StatePublished - 1983
Externally publishedYes

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Neutron scattering
Raman scattering
Glass
Atoms

Cite this

Nemanich, R., Galeener, F. L., Mikkelsen, J. C., Connell, G. A. N., Etherington, G., Wright, A. C., & Sinclair, R. N. (1983). Configurations of a chemically ordered continuous random network to describe the structure of GeSe2 glass. Physica B+C, 117-118(PART 2), 959-961. https://doi.org/10.1016/0378-4363(83)90706-4

Configurations of a chemically ordered continuous random network to describe the structure of GeSe2 glass. / Nemanich, Robert; Galeener, F. L.; Mikkelsen, J. C.; Connell, G. A N; Etherington, George; Wright, Adrian C.; Sinclair, Roger N.

In: Physica B+C, Vol. 117-118, No. PART 2, 1983, p. 959-961.

Research output: Contribution to journalArticle

Nemanich, R, Galeener, FL, Mikkelsen, JC, Connell, GAN, Etherington, G, Wright, AC & Sinclair, RN 1983, 'Configurations of a chemically ordered continuous random network to describe the structure of GeSe2 glass', Physica B+C, vol. 117-118, no. PART 2, pp. 959-961. https://doi.org/10.1016/0378-4363(83)90706-4
Nemanich, Robert ; Galeener, F. L. ; Mikkelsen, J. C. ; Connell, G. A N ; Etherington, George ; Wright, Adrian C. ; Sinclair, Roger N. / Configurations of a chemically ordered continuous random network to describe the structure of GeSe2 glass. In: Physica B+C. 1983 ; Vol. 117-118, No. PART 2. pp. 959-961.
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