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Nickel thiocyanate

Rhodan-ion, n. thiocyanogen ion, CNS -kali, -kalium, n, potassium thiocyanate, -kalzium, n. calcium thiocyanate, -kupfer, n. cupric thiocyanate, copper(II) thiocyanate. -iSsung, /. thiocyanate solution, -metall, n. (metallic) thiocyanate, -methyl, n. methyl thiocyanate, -natrium, n, sodium thiocyanate, -nickel, m. nickel thiocyanate, -quecksilber, n. mercury thiocyanate, -salz, n. thiocyanate, -sdure, /. (Org. Chem.) thiocyan(at)o acid, -tonerde, /. aluminum thiocyanate. [Pg.365]

Nickel carbonate, when dissolved in aqueous thiocyanic acid, yields a yellow brown precipitate of hydrated nickel thiocyanate ... [Pg.612]

Nickelamide, Ni(NH 2)2, is precipitated as a red, flocculent mass when a solution of nickel thiocyanate in liquid ammonia is treated with... [Pg.125]

Nickel Thiocyanate, Ni(CNS)2, has been obtained in the anhydrous condition as a chocolate-coloured amorphous powder. The hydrated salt, 2Ni(SCN)a.3HaO, obtained by dissolving nickel carbonate in thio-cyanic acid is a yellowish brown crystalline powder.10 Double salts... [Pg.132]

Figure 34 Cross-linking of Ni(p,-SCN)2L2 n coordination polymer via carboxyl-carboxyl hydrogen bonds between isonicotinic acid ligands (L) to give a sheet structure which stacks providing channels that can accommodate polycyclic aromatic hydrocarbon guest molecules, here anthracene [80], Oxygen, nitrogen and key hydrogen atoms are shaded nickel thiocyanate polymer and anthracene guest molecules shown in wireframe style. Figure 34 Cross-linking of Ni(p,-SCN)2L2 n coordination polymer via carboxyl-carboxyl hydrogen bonds between isonicotinic acid ligands (L) to give a sheet structure which stacks providing channels that can accommodate polycyclic aromatic hydrocarbon guest molecules, here anthracene [80], Oxygen, nitrogen and key hydrogen atoms are shaded nickel thiocyanate polymer and anthracene guest molecules shown in wireframe style.
An example of the use of this approach is shown [12] for the nickel-thiocyanate, Dowex-50W-X4, and Dowex 1-X4 system (Fig. 7). In the lowest SCN concentration range, the slope is -1 and NiSCN is identified in the middle SCN concentration range the slope increases from negative to positive and finally with further increase of SCN" concentration it reaches +4 to signal the predominance of the fully coordinated Ni(SCN)g" complex in the anion-exchanger phase. The absorption spectrum of this last complex is shown in Fig. 8. It has not yet been observed in concen-... [Pg.212]

CSO] Csokan, P., The absorption spectra of cobalt and nickel thiocyanate solutions, Acta Phys. Chem., 6, (1938), 288-304. Cited on page 232. [Pg.497]

FR02] Fronaeus, S., An ion exchange and extinctiometric investigation of the nickel thiocyanate system, Acta Chem. Scand., 7, (1953), 21-31. Cited on pages 232, 233, 234,235, 279, 368. [Pg.502]

LAN/CUM] Landers, L., Cummiskey, C. J., Anion exchange of metal complexes - Vl.The nickel-thiocyanate system, J. Inorg. Nucl. Chem., 33, (1971), 4239-4245. Cited on pages 232, 233, 234, 235, 348. [Pg.528]

TUR/MAL] Tur yan, Y. 1., Malyavinskaya, O. N., Catalytic polarographic currents of nickel thiocyanate complexes. Kinetics of complexing., Elektrokhimiya, 7, (1971), 181-188, in Russian. Cited on pages xxiv, 234, 237,350,351. [Pg.528]

Thiobis (4-(1,1,3,3-tetramethylbutyi) phenoi) ato (2,1))-(butyiamine) nickei. See 2,2 -Thiobis (4-t-octylphenolato)-n-butylamine nickel Thiocyanic acid, 2-(benzothiazolylthio) methyi ester. See 2-Thiocyano-methylthiobenzothiazole... [Pg.1383]

Nickel thiocyanate positive electrodes in propylene carbonate were developed by press-forming the active metal onto a stainless steel screen. Evaluation of electrode materials included studies of cyclic voltammetry at solid electrodes, and measurements of the solubility of the electrode materials in the organic electrolytes. Charge and discharge data are given as are data on separator materials. [Polypropylene or Polyethylene] some metal halide-lithium couples are reviewed. [Pg.775]

Nonaqueous lithium batteries investigated Solvent Propylene carbonate Electrode system Lithium-Nickel thiocyanate... [Pg.778]


See other pages where Nickel thiocyanate is mentioned: [Pg.615]    [Pg.104]    [Pg.273]    [Pg.312]    [Pg.309]    [Pg.231]    [Pg.510]    [Pg.4977]    [Pg.599]    [Pg.775]    [Pg.265]   
See also in sourсe #XX -- [ Pg.308 , Pg.309 , Pg.310 , Pg.311 , Pg.312 ]




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