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IONISCH-ELEKTRONISCHE MISCHLEITUNG IN VERBINDUNGEN VOM ARGYRODIT TYP (DFG-GEFOERDERT) = CONDUCTION MIXTE IONIQUE-ELECTRONIQUE DANS DES COMBINAISONS DU TYPE DE L'ARGYRODITENITSCHE R.1982; FORSCHUNGSBER. ALBERT-LUDWIG-UNIV., FREIB. I. BR.; ISSN 0720-8618; DEU; DA. 1982; VOL. 1; 14-007Article

NEW DATA FOR AG8SNS6(CANFIELDITE) AND AG8GES6(ARGYRODITE).WANG N.1978; NEU. JB. MINERAL., MONATSH.; DTSCH.; DA. 1978; NO 6; PP. 269-272; BIBL. 10 REF.Article

Genetic environment of germanium-bearing gold-silver vein ores from the Wolyu Mine, Republic of KoreaCHIL-SUP SO; SEONG-TAEK YUNBASU; SHELTON, K.L et al.International geological congress. 1992, p.748Conference Paper

NEW DATA FOR AG8SNS6 (CANFIELDITE) AND AG8GES6 (ARGYRODITE).WANG N.1978; NEU. JB. MINERAL., MONATSH.; DTSCH.; DA. 1978; NO 6; PP. 269-272; BIBL. 10 REF.; 1 ILL.Article

DIE KRISTALLSTRUKTUR DER TIEFTEMPERATURMODIFIKATION VON AG8GES6. SYNTHETISCHER ARGYRODIT. = STRUCTURE CRISTALLINE DE LA MODIFICATION DE BASSE TEMPERATURE DE AG8GES6. ARGYRODITE SYNTHETIQUEEULENBERGER G.1977; MONATSH. CHEM.; OESTERR.; DA. 1977; VOL. 108; NO 4; PP. 901-913; ABS. ANGL.; BIBL. 31 REF.Article

«Ag8SnTe6» ― Ein neuer stabiler Vertreter der Argyrodite? = «Ag8SnTe6» une nouvelle forme stable d'Argyrodite? = «Ag8SnTe6» a new stable Argyrodite ?GATHER, B; BLACHNIK, R.Zeitschrift für Naturforschung. Teil b, Anorganische Chemie, organische Chemie. 1983, Vol 38, Num 6, pp 786-787, issn 0340-5087Article

ARGYRODIT.SANSONI G.1970; AUFSCHLUSS; DEU; 1970(4), VOL. 21, NUM. 0004, P. 149 A 150Miscellaneous

Genetic environment of germanium-bearing gold-silver vein ores from the Wolyu mine, Republic of KoreaSEONG-TAEK YUN; CHIL-SUP SO; SANG-HOON CHOI et al.Mineralium deposita. 1993, Vol 28, Num 2, pp 107-121, issn 0026-4598Conference Paper

VAPOUR GROWTH OF ARGYRODITE-TYPE IONIC CONDUCTORS CU6PS5HALFIECHTER S; ECKSTEIN J; NITSCHE R et al.1983; JOURNAL OF CRYSTAL GROWTH; ISSN 0022-0248; NLD; DA. 1983; VOL. 61; NO 2; PP. 275-283; BIBL. 13 REF.Article

Te-Rich argyrodite occurrence in Roşia Montană ore deposit, Apuseni Mountains, Romania = Occurence d'argyrodite à tellure dans le gisement de Rosia Montana, Monts Apuseni, RoumanieBAILLY, Laurent; TAMAS, Calin-Gabriel; MINUT, Adrian et al.Comptes rendus. Géoscience. 2005, Vol 337, Num 8, pp 755-762, issn 1631-0713, 8 p.Article

Relation structure-conductivité dans les conducteurs super ioniques Ag7XY5Z (X=Si, Ge, Sn, Y=Cl,Br, I)Zerouale, Abdellaziz; Ribes, Michel.1988, 83 p.Thesis

Formation and phase transition of argyrodite type Ag7TaSe6xS6(1-x) solid solutionWADA, H; ONODA, M; ISHII, M et al.Journal of alloys and compounds. 2004, Vol 383, pp 144-147, issn 0925-8388, 4 p.Conference Paper

Differential thermal analysis of Ag―Ge―Se, Ge―Se charge materials in the process of their heating and Ag8GeSe6, GeSe2 compound synthesisCHEKAYLO, M. V; UKRAINETS, V. O; IL'CHUK, G. A et al.Journal of non-crystalline solids. 2012, Vol 358, Num 2, pp 321-327, issn 0022-3093, 7 p.Article

Nouveaux conducteurs ioniques rapides de la famille des argyrodites Ag7XY5Z (X=Si,Ge,Sn ; Y=S, Se ; Z=Cl, Br,I) = New superionic conductors of the argyrodite group : Ag7XY5Z, X=Si,Ge,Sn; Y=S,Se; Z=Cl,Br,ILAQIBI, Mina; RIBES, Michel.1986, 100 fThesis

NMR, symmetry elements, structure and phase transitions in the argyrodite familyGAUDIN, E; TAULELLE, F; BOUCHER, F et al.Journal de chimie physique. 1998, Vol 95, Num 2, pp 295-301, issn 0021-7689Conference Paper

Long-range Li+ dynamics in the lithium argyrodite Li7PSe6 as probed by rotating-frame spin―lattice relaxation NMREPP, V; GÜN, Ö; DEISEROTH, H.-J et al.PCCP. Physical chemistry chemical physics (Print). 2013, Vol 15, Num 19, pp 7123-7132, issn 1463-9076, 10 p.Article

Limite d'absorption et transitions de phase dans les cristaux superioniques Cu6PS5Hal Hal=Br, I]STUDENYAK, I. P; KOVACH, D. SH; PAN'KO, V. V et al.Fizika tverdogo tela. 1984, Vol 26, Num 9, pp 2598-2602, issn 0367-3294Article

Dielectric Investigations of Phase Transitions in Cu6PS5(Ix,Br1-x) Mixed CrystalsDZIAUGYS, Andrius; BANYS, Juras; SAMULIONIS, Vytautas et al.Ferroelectrics (Print). 2011, Vol 420, pp 30-36, issn 0015-0193, 7 p.Conference Paper

NMR selection of space groups in structural analysis of Ag7PSe6GAUDIN, E; BOUCHER, F; EVAIN, M et al.Chemistry of materials. 2000, Vol 12, Num 6, pp 1715-1720, issn 0897-4756Article

A structural differentiation of quaternary copper argyrodites: Structure - property relations of high temperature ion conductorsNILGES, Tom; PFITZNER, Arno.Zeitschrift für Kristallographie. 2005, Vol 220, Num 2-3, pp 281-294, issn 0044-2968, 14 p.Article

Diffusion paths formation for Cu+ ions in superionic Cu6PS5I single crystals studied in terms of structural phase transitionGAGOR, A; PIETRASZKO, A; KAYNTS, D et al.Journal of solid state chemistry (Print). 2005, Vol 178, Num 11, pp 3366-3375, issn 0022-4596, 10 p.Article

The argyrodite γ-Ag9AlSe6 : A non-metallic filled Laves phaseGAUDIN, E; DEISEROTH, H. J; ZAISS, T et al.Zeitschrift für Kristallographie. 2001, Vol 216, Num 1, pp 39-44, issn 0044-2968Article

THE ARGYRODITES: A NEW FAMILY OF TETRAHEDRALLY CLOSE-PACKED STRUCTURESKUHS WF; NITSCHE R; SCHEUNEMANN K et al.1979; MATER. RES. BULL.; USA; DA. 1979; VOL. 14; NO 2; PP. 241-248; BIBL. 31 REF.Article

Crystal growth of argyrodite-type phases Cu8-xGeS6-xIx and Cu8-xGeSe6-xIx (0≤x≤0.8)TOMM, Yvonne; SCHORR, Susan; FIECHTER, Sebastian et al.Journal of crystal growth. 2008, Vol 310, Num 7-9, pp 2215-2221, issn 0022-0248, 7 p.Article

Structural aspects of fast copper mobility in Cu6PS5Cl-The best solid electrolyte from CU6PS5X seriesGAGOR, A; PIETRASZKO, A; KAYNTS, D et al.Journal of solid state chemistry (Print). 2008, Vol 181, Num 4, pp 777-782, issn 0022-4596, 6 p.Article

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