AMORPHOUS PRECURSORS FOR LOW-TEMPERATURE PREPARATION OF CHEVREL PHASES M(X)MO(6)S(8) AND THEIR TUNGSTEN ANALOGS

被引:26
作者
MCCARLEY, RE [1 ]
HILSENBECK, SJ [1 ]
XIE, X [1 ]
机构
[1] IOWA STATE UNIV SCI & TECHNOL,DEPT CHEM,AMES,IA 50011
关键词
D O I
10.1006/jssc.1995.1273
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
High-yield preparations of the amorphous ternary salts Na-2x(Mo6S8)Sx . yMeOH (with x = 1.0 to 1.5, y = 4 to 5) and Na-2.1 (W6S8)S-1.05. 5.4MeOH have been devised by reaction of M(6)Cl(12) (M = Mo or W) with NaSH and NaOBu in various ratios in refluxing n-BuOH for M = Mo and in refluxing MeCN for M = W. Characterization of these amorphous materials by chemical and spectroscopic methods (IR, Raman, PES) shows that the (M(6)S(8))(0) cluster units are present. Vacuum thermolysis of the amorphous Na-2x(Mo6S8)S-x . yMeOH first produces poorly crystalline NaMo6S8 by disproportionation at 800 degrees C and well-crystallized NaMo6S8 at greater than or equal to 900 degrees C. The amorphous tungsten compound disproportionates to W and WS2 at greater than or equal to 200 degrees C. Ion exchange of the sodium material in methanol with soluble M(2+) and M(3+) salts (M = Sn, Co, Ni, Pb, La, Ho) produces the M(2x/n)(n+)(Mo6S8)S-x . yMeOH compounds. For tungsten, only exchange with SnCl2 in THF was examined and resulted in Sn-x change with SnCl2 in THF was examined and resulted in Sn-x (W6S8)S-x . yMeOH. Conversion of Sn-x(Mo6S8)S-x . yMeOH to poorly crystalline Chevrel phase, SnMo6S8, was achieved by reduction under H-2 at 600 degrees C. Well-crystallized SnMo6S8 resulted at higher temperatures. Conversion of Sn-x(W6S8)S-x . yMeOH to SnW6S8 was not successful. (C) 1995 Academic Press, Inc.
引用
收藏
页码:269 / 274
页数:6
相关论文
共 21 条
[11]   HYDRODESULFURIZATION CATALYSIS BY CHEVREL PHASE-COMPOUNDS [J].
MCCARTY, KF ;
ANDEREGG, JW ;
SCHRADER, GL .
JOURNAL OF CATALYSIS, 1985, 93 (02) :375-387
[12]   HYDRODESULFURIZATION BY REDUCED MOLYBDENUM SULFIDES - ACTIVITY AND SELECTIVITY OF CHEVREL PHASE CATALYSTS [J].
MCCARTY, KF ;
SCHRADER, GL .
INDUSTRIAL & ENGINEERING CHEMISTRY PRODUCT RESEARCH AND DEVELOPMENT, 1984, 23 (04) :519-524
[13]   RECHARGEABLE NONAQUEOUS LITHIUM/MO6S8 BATTERY [J].
MULHERN, PJ ;
HAERING, RR .
CANADIAN JOURNAL OF PHYSICS, 1984, 62 (06) :527-531
[14]  
Opalovskii A.A., 1966, IAN SSSR NEORG MATER, V2, P443
[15]   RARE-EARTH BASED CHEVREL PHASES REMO6X8 - CRYSTAL-GROWTH, PHYSICAL AND SUPERCONDUCTING PROPERTIES [J].
PENA, O ;
SERGENT, M .
PROGRESS IN SOLID STATE CHEMISTRY, 1989, 19 (03) :165-281
[16]   SYNTHESIS, STRUCTURE, AND ELECTRONIC-PROPERTIES OF OCTAKIS(MU-3-SULFIDO)HEXAKIS(TRIETHYLPHOSPHINE)HEXATUNGSTEN AS A TUNGSTEN ANALOG OF THE MOLECULAR-MODEL FOR SUPERCONDUCTING CHEVREL PHASES [J].
SAITO, T ;
YOSHIKAWA, A ;
YAMAGATA, T ;
IMOTO, H ;
UNOURA, K .
INORGANIC CHEMISTRY, 1989, 28 (18) :3588-3592
[17]   TERNARY ALKALI MOLYBDENUM SULFIDES AXMOS2 AND AXMO3S4 FROM ALKALI-HALIDE MELTS [J].
SCHOLLHORN, R ;
KUMPERS, M ;
PLORIN, D .
JOURNAL OF THE LESS-COMMON METALS, 1978, 58 (01) :55-60
[18]  
Simon, 1976, CHEMIE UNSERER Z, V10, P1
[19]  
SPIESSER M, 1967, CR ACAD SCI C CHIM, V265, P92
[20]  
YVON K, 1979, CURRENT TOPICS MAT S, V0003, P00053