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New sensory materials based on chalcogenide glasses containing zinc, cadmium, and manganese sulfides. / Legin, K. A.; Bolotov, A. M.; Legin, A. V.; Vlasov, Yu G.

In: Russian Journal of Applied Chemistry, Vol. 77, No. 5, 01.05.2004, p. 716-720.

Research output: Contribution to journalArticlepeer-review

Harvard

Legin, KA, Bolotov, AM, Legin, AV & Vlasov, YG 2004, 'New sensory materials based on chalcogenide glasses containing zinc, cadmium, and manganese sulfides', Russian Journal of Applied Chemistry, vol. 77, no. 5, pp. 716-720. https://doi.org/10.1023/B:RJAC.0000038797.87121.1a

APA

Legin, K. A., Bolotov, A. M., Legin, A. V., & Vlasov, Y. G. (2004). New sensory materials based on chalcogenide glasses containing zinc, cadmium, and manganese sulfides. Russian Journal of Applied Chemistry, 77(5), 716-720. https://doi.org/10.1023/B:RJAC.0000038797.87121.1a

Vancouver

Legin KA, Bolotov AM, Legin AV, Vlasov YG. New sensory materials based on chalcogenide glasses containing zinc, cadmium, and manganese sulfides. Russian Journal of Applied Chemistry. 2004 May 1;77(5):716-720. https://doi.org/10.1023/B:RJAC.0000038797.87121.1a

Author

Legin, K. A. ; Bolotov, A. M. ; Legin, A. V. ; Vlasov, Yu G. / New sensory materials based on chalcogenide glasses containing zinc, cadmium, and manganese sulfides. In: Russian Journal of Applied Chemistry. 2004 ; Vol. 77, No. 5. pp. 716-720.

BibTeX

@article{73e4bde5d0dd4536b3bb7a815f39e82e,
title = "New sensory materials based on chalcogenide glasses containing zinc, cadmium, and manganese sulfides",
abstract = "New chalcogenide glasses of the system 0.5AgI-(0.5 - x)Sb 2S 3-xMS containing cadmium, man- ganese, and zinc sulfides were obtained. The high purity of these materials and their glassy state were proved by X-ray analysis and X-ray fluorescence energy-dispersive spectroscopy. The impedance of the glasses obtained was measured within a wide range of frequencies, and the dependences of the conductivity on the composition of glasses were studied. New potentiometric sensors based the new glasses were developed, and an electrochemical experiment was carried out.",
author = "Legin, {K. A.} and Bolotov, {A. M.} and Legin, {A. V.} and Vlasov, {Yu G.}",
year = "2004",
month = may,
day = "1",
doi = "10.1023/B:RJAC.0000038797.87121.1a",
language = "English",
volume = "77",
pages = "716--720",
journal = "Russian Journal of Applied Chemistry",
issn = "1070-4272",
publisher = "МАИК {"}Наука/Интерпериодика{"}",
number = "5",

}

RIS

TY - JOUR

T1 - New sensory materials based on chalcogenide glasses containing zinc, cadmium, and manganese sulfides

AU - Legin, K. A.

AU - Bolotov, A. M.

AU - Legin, A. V.

AU - Vlasov, Yu G.

PY - 2004/5/1

Y1 - 2004/5/1

N2 - New chalcogenide glasses of the system 0.5AgI-(0.5 - x)Sb 2S 3-xMS containing cadmium, man- ganese, and zinc sulfides were obtained. The high purity of these materials and their glassy state were proved by X-ray analysis and X-ray fluorescence energy-dispersive spectroscopy. The impedance of the glasses obtained was measured within a wide range of frequencies, and the dependences of the conductivity on the composition of glasses were studied. New potentiometric sensors based the new glasses were developed, and an electrochemical experiment was carried out.

AB - New chalcogenide glasses of the system 0.5AgI-(0.5 - x)Sb 2S 3-xMS containing cadmium, man- ganese, and zinc sulfides were obtained. The high purity of these materials and their glassy state were proved by X-ray analysis and X-ray fluorescence energy-dispersive spectroscopy. The impedance of the glasses obtained was measured within a wide range of frequencies, and the dependences of the conductivity on the composition of glasses were studied. New potentiometric sensors based the new glasses were developed, and an electrochemical experiment was carried out.

UR - http://www.scopus.com/inward/record.url?scp=4444348952&partnerID=8YFLogxK

U2 - 10.1023/B:RJAC.0000038797.87121.1a

DO - 10.1023/B:RJAC.0000038797.87121.1a

M3 - Article

AN - SCOPUS:4444348952

VL - 77

SP - 716

EP - 720

JO - Russian Journal of Applied Chemistry

JF - Russian Journal of Applied Chemistry

SN - 1070-4272

IS - 5

ER -

ID: 30514108