How silver influences the structure and physical properties of chalcogenide glass (GeS2)50(Sb2S3)50

被引:12
|
作者
Fraenkl, Max [1 ]
Frumarova, Bozena [2 ,3 ]
Podzemna, Veronika [3 ]
Slang, Stanislav [3 ]
Benes, Ludvik [1 ]
Vlcek, Milan [2 ]
Wagner, Tomas [1 ,3 ]
机构
[1] Univ Pardubice, Dept Gen & Inorgan Chem, Studentska 95, Pardubice 53210, Czech Republic
[2] ASCR, Inst Macromol Chem, Vvi, Heyrovsky Sq 2, Prague 16206, Czech Republic
[3] Univ Pardubice, Fac Chem Technol, Ctr Mat & Nanotechnol, Studentska 95, Pardubice 53210, Czech Republic
关键词
Silver doping; Chalcogenide glasses; Hardness; Impedance spectroscopy; Radioactive tracer diffusion; OPTICAL-PROPERTIES; RAMAN-SPECTRA; CONDUCTIVITY; FILMS; DIFFUSION; DYNAMICS; DENSITY;
D O I
10.1016/j.jnoncrysol.2018.07.046
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The presented study shows how the incorporation of silver changes the structure and physical properties of chalcogenide glass (GeS2)(50)(Sb2S3)(50). Nine samples with silver content (0-25 at. %) were studied to give a detailed picture. The structure and its changes were analyzed by Raman spectroscopy. The medium range order of the (GeS2)(50)(Sb2S3)(50) glass was identified. The structural motif of interconnected SbS3/2 pyramids is the doorway for the silver incorporation in the (GeS2)(50)(Sb2S3)(50) glass. The material hardness is significantly increased by up to 26% due to silver addition. The ability of silver to fill cavities in a glass is responsible for the observed hardness increase. Electronic properties and silver ion mobility were examined by impedance spectroscopy and radioactive tracer diffusion. The purpose of the presented study is to give an instructive description of how silver change the structure of the studied chalcogenide glass and give a complex feeling of how the silver changes its physical properties.
引用
收藏
页码:412 / 419
页数:8
相关论文
共 50 条
  • [31] Mechanical Properties and Crystallization Behavior of GeS2-Sb2S3-In2S3 Chalcogenide Glass
    Ying, Lei
    Lin, Changgui
    Nie, Qiuhua
    Li, Zhuobin
    Xu, Yinsheng
    Chen, Feifei
    Dai, Shixun
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2012, 95 (04) : 1320 - 1325
  • [32] Glass formation and properties of novel GeS2-Sb2S3-In2S3 chalcogenide glasses
    Ying, Lei
    Lin, Changgui
    Xu, Yinsheng
    Nie, Qiuhua
    Chen, Feifei
    Dai, Shixun
    OPTICAL MATERIALS, 2011, 33 (11) : 1775 - 1780
  • [33] Correlation between the structure and relaxation dynamics of (GeS2)y(Sb2S3)1 - y glassy matrices
    Svoboda, Roman
    Malek, Jiri
    Liska, Marek
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2018, 479 : 113 - 119
  • [34] Structural study of (Li2S)50(GeS2)50 glass by X-ray and neutron diffraction
    Itoh, Keiji
    Sonobe, Masashi
    Sugiyama, Masaaki
    Mori, Kazuhiro
    Fukunaga, Toshiharu
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2008, 354 (2-9) : 150 - 154
  • [35] Ablation of (GeS2)0.3(Sb2S3)0.7 glass with an ultra-violet nano-second laser
    Knotek, P.
    Navesnik, J.
    Cernohorsky, T.
    Kincl, M.
    Vlcek, M.
    Tichy, L.
    MATERIALS RESEARCH BULLETIN, 2015, 64 : 42 - 50
  • [36] Rayleigh and Mandelstam-Brillouin Light Scattering in Chalcogenide Glasses of the (Sb2S3) x (GeS2)100-x System
    Shpak, I. I.
    Yevych, R. M.
    Shpak, A. I.
    Perechinskii, S. I.
    Bletskan, D. I.
    Vysochanskii, Yu. M.
    JOURNAL OF APPLIED SPECTROSCOPY, 2017, 84 (04) : 567 - 572
  • [37] Crystal growth in (GeS2)x(Sb2S3)1-x thin films
    Bartak, Jaroslav
    Podzemna, Veronika
    Malek, Jiri
    Eising, Gert
    Kooi, Bart J.
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2015, 410 : 7 - 13
  • [38] RAMAN-SPECTRA OF THE (GES2)1-X(SB2S3)X SYSTEM GLASSES
    KOUDELKA, L
    HORAK, J
    PISARCIK, M
    CHEMICKE ZVESTI, 1981, 35 (03): : 327 - 332
  • [39] The response of (GeS2)x(Sb2S3)(1-x) thin films to illumination and annealing
    Knotek, P.
    Kutalek, P.
    Tichy, L.
    THIN SOLID FILMS, 2019, 676 : 113 - 119
  • [40] Mid-infrared emissions from Er3+ in Ga2S3−GeS2−Sb2S3 glasses
    Manabu Ichikawa
    Yoichi Ishikawa
    Takashi Wakasugi
    Kohei Kadono
    Journal of Materials Research, 2010, 25 : 2111 - 2119