The Hg−Mg (Mercury-Magnesium system)
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1893Bac: P. Bachmetjew and J. Wzarow,Zh. Russ. Fiz. Khim. Obsh., 25(1), 119 and 219 (1893) in Russian. (Equi Diagram; Experimental)
00Ker: W. Kerp, W. Bottger, and H. Iggena, “Information on Amalgams,”Z. Anorg. Chem., 25, 1–35 (1900). (Equi Diagram; Experimental)
11Zuk: G. J. Zukowsky, “On the Amalgams of Lithium,”Z. Anorg. Chem., 71, 408–418 (1911) in German. (Equi Diagram; Experimental)
Indicates key paper.15Cam: L. Cambi and G. Speroni, “Amalgams of Magnesium,”Atti Accad. Naz. Lincei, Classe Sci., Matematiche Natur. Rend., Ser. 5, 24(1), 734–738 (1915). (Equi Diagram; Experimental; Indicates presence of a phase diagram)
20Kre: R. Kremann and R. Muller, “Electromotive Behavior of Binary Alloys,”Z. Metallkd., 12, 307–312 (1900) in German. (Equi Diagram; Experimental)
Indicates key paper.22Bec: R. P. Beck, “The EMF Properties of Magnesium and Thermal Analysis of the Mg−Hg System,”Rec. Trav. Chim., 41, 353–399 (1922) in French. (Equi Diagram; Experimental; Indicates presence of a phase diagram)
22Loo: A. G. Loomis, “A Study of the System Ammonia: Magnesium: Mercury, the Formation of Magnesium Hexammoniate,”J. Am. Chem. Soc., 44, 8–19 (1922). (Equi Diagram; Experimental; Indicates presence of a phase diagram)
Indicates key paper.22Smi: A. Smits and R. P. Beck, “The Electromotive Behavior of Magnesium,” Proc. Akad. Wetenschap. Amsterdam,23, 975–976 (1921−1922). (Equi Diagram; Experimental; Indicates presence of a phase diagram)
23Mul: R. Muller and W. Knaus, “The Electromotive Behavior of Magnesium in the Magnesium Amalgams,”Z. Anorg. Chem., 130, 173–180 (1923) in German. (Thermo; Experimental)
24Tam: V. G. Tamman and E. Ohler, “The Heat of Solution of Metals in Hg and Gold Amalgam as well as the Heat of Mixing of Amalgams,”Z. Anorg. Chem., 135, 118–126 (1924) in German. (Thermo; Experimental)
Indicates key paper.30Dan: P. T. Daniltschenko, “Mg−Hg Phase Diagram,”Zh. Russ. Fij. Khim. Obsh., 975−988 (1930) in Russian. (Equi Diagram; Experimental; Indicates presence of a phase diagram)
36Bra: G. Brauer and W. Hauke, “Crystal Structure of Intermetallic Compounds MgAu and MgHg,”Z. Phys. Chem., B, 33, 304–310 (1936) in German. (Crys Structure; Experimental)
41Bra: G. Brauer and R. Rudolph, “X-Ray Analysis of Magnesium Amalgams,”Z. Anorg. Chem., 248, 405–524 (1941) in German. (Crys Structure; Experimental)
47Bra: G. Brauer, H. Nowotny, and R. Rudolph, “X-Ray Investigation of the Mg−Hg System,”Z. Metallkd. 38, 81–84 (1947) in German. (Crys Structure; Experimental)
50Bus: R. S. Busk, “Lattice Parameters of Magnesium Alloys,”Trans. Metall. AIME, 188, 1460–1464 (1950). (Crys Structure; Experimental)
56Fro: B. R. T. Frost and J. T. Maskrey, “The Measurements of Vapor Pressures by a Modified Dew-Point Method with Particular Reference to the System Mercury-Magnesium,” Atomic Energy Res. Establ. (Gr. Brit.) M/R 1898, 1−21 (1956). (Thermo; Experimental; Indicates presence of a phase diagram)
66Cla: T. Claeson and H. L. Luo, “Superconducting Transition Temperatures of Mercury-Alkaline Earth Metal Compounds,”J. Phys. Chem. Solids, 27, 1081–1085 (1966). (Equi Diagram; Experimental)
75Ard: S. Ardizzone, P. Longhi, T. Mussini, and S. Rodinini, “A Redetermination of the Standard Potential of the Magnesium Amalgam Electrode,”Ann. Chim., 65, 753–756 (1975). (Thermo; Experimental)
75Vya1: M. Y. Vyazner, I. P. Vyatkin, S. V. Mushkov, E. I. Mishini, and O. I. Brandman, “Thermodynamic Properties of Alloys in the Magnesium-Mercury System,”Zh. Prik. Khim., 48(1), 77–80 (1975) in Russian; TR:J. Appl. Chem. USSR, 48(1), 74−76 (1975). (Thermo; Experimental)
75Vya2: M. Y. Vyazner, I. P. Vyatkin, and S. V. Mushkov, “Solidification of Magnesium Mercury Ingots,”Izv. Akad. Nauk SSSR Met., (3), 237–239 (1975) in Russian; TR:J. Appl. Chem. USSR, 48(1) 74−76 (1975). (Thermo; Experimental)
80Hil: K. Hilpert, “Study of the Vaporization of Amalgams with a New Knudsen Cell Mass Spectrometer System, Part I: The Compounds MgHg and MgHg2,”Ber. Bunsenges. Phys. Chem., 84, 494–499 (1980). (Thermo; Experimental)