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- X-Ray crystal structure of the barium thiocyanate complex of the cyclic poly-ether dicyclohexyl-18-crown-6 (isomer A). N. Kent Dalley, Don E. Smith, Reed M. Izatt, James J. Christensen
, J. Chem. Soc., Chem. Commun.
, 1972
, 90
- The crystal structures of complexes of 2,5,8,11,14,18,21,24,27,30-decaoxatricyclo[13.17.0.0]dotriacontane with potassium thiocyanate (1 : 1), barium thiocyanate (1 : 1) dihydrate, and ammonium thiocyanate (1 : 2). John D. Owen
, J. Chem. Soc., Perkin Trans. 2
, 1983
, 407
- 964. Coenzyme A. Part X. Model experiments on the synthesis of pyrophosphates of N-pantoylamines. New methods for the debenzylation of esters of pyrophosphoric acid. J. Arris, J. Baddiley, J. G. Buchanan, E. M. Thain
, J. Chem. Soc.
, 1956
, 4968
- VIII.—The action of metallic thiocyanates on carbonyl chloride. Augustus Edward Dixon
, J. Chem. Soc., Trans.
, 1903
, 83
, 84
- Co-ordination compounds of indium. Part V. Indium thiocyanate and its addition compounds. S. J. Patel, D. B. Sowerby, D. G. Tuck
, J. Chem. Soc. A
, 1967
, 1187
- Index pages
, J. Chem. Soc., Perkin Trans. 2
, 1983
, A001
- 416. Phase-rule studies on metallic thiocyanates. Part III. The systems Ba(NCS)2–NH4NCS–H2O and Ba(NCS)2–AgNCS–H2O at 25°. Vincent J. Occleshaw
, J. Chem. Soc.
, 1934
, 1892
- 1. The ternary systems NaSCN–Ca(SCN)2–H2O, KSCN–Ca(SCN)2–H2O, NH4SCN–Ca(SCN)2–H2O and Ca(SCN)2–AgSCN–H2O at 25°. A. K. McKerrow, V. J. Occleshaw, Frank Drabble
, J. Chem. Soc.
, 1946
, 1
- The origin of surfactant amphiphilicity and self-assembly in protic ionic liquids. Andrew Dolan, Rob Atkin, Gregory G. Warr
, Chem. Sci.
, 2015
, 6
, 6189
- Non-collinear magnetism in the post-perovskite thiocyanate frameworks CsM(NCS)3. Madeleine Geers, Jie Yie Lee, Sanliang Ling, Oscar Fabelo, Laura Cañadillas-Delgado, Matthew J. Cliffe
, Chem. Sci.
, 2023
, 14
, 3531