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Lithium gold chloride

Solubility op Sodium Gold Chloride, Lithium Gold Chloride. Potassium Gold Chloride, Rhubidium Gold Chloride, and Caesium Gold Chloride in Water. [Pg.141]

Aluminium B a 5 o B B < I Antimony a < Barium B a 1 3 Bismuth I Boron Cadmium 1 Caesium Calcium 1 Cerium Chloride, Chlorine [ Chromium X) o o C o a Gallium I Germanium Gold 1 Hafnium Hydrogen sulphide B a 5 a B a 5 a o 1 Lanthanons Lead f Lithium 1 Magnesium f Manganese Mercury Molybdenum... [Pg.821]

Tris(hydroxymethyl)methylamine (TRIS), sodium chloride, sodium citrate, ethylenediamine tetraacetic acid disodium salt (EDTA), lithium chloride, Tween 20, streptavidin 10 nm colloidal gold labelled, hydrochloric acid (37%), nitric acid, streptavidin-coated paramagnetic beads (MB) with a diameter of 2.8 pm, Dynabeads M-280 Streptavidin (Dynal Biotech, Oslo, Norway) biotinylated probe oligonucleotides which sequences are shown in Table 53.1. [Pg.1313]

Gold - Water-soluble gold porphyrin ions, [Au(TPPS4)]3 and [Au(TMPyP)]5+ (as the 3- and 4-pyridyl isomers), were obtained from the respective free-base porphyrins in a mixture of water/pyridine/lithium chloride containing KAuCl4 [142]. The products were purified by extraction with acetone and methanol and subsequent HPLC, however, the counterions were not determined. [Pg.20]

Variations on the theme include the use of gold(I) chloride to transform orf/to-alkynylphenylthio-silanes into 3-trialkylsilyl-benzothiophenes, ° carbonylative closures to produce 3-aroyl-benzofurans, ° and cyclisation with hot lithium chloride. ... [Pg.442]

NICKEL CHLORIDE (7718-54-9) NiClj Violent reaction with chlorine nitrate. Mixtures with potassium produces an impact-sensitive explosive. Contact with strong acids or acid fumes produces highly toxic and corrosive HCl gas. Forms heat- or shock-sensitive explosives with ammonium nitrate. Increases sensitivity to heat, impact, or friction of hydrazinium perchlorate. Incompatible with gold, lithium, sodium, sulfur. Thermal decomposition emits toxic chloride fumes. [Pg.760]

Results of acute toxicity bioassays of 96-h duration with adults of Fundulus heteroclitus, an estuarine cyprinodontiform killihsh, and salts of various metals and metalloids showed that gold, as auric chloride (Au+ ), was comparatively lethal, with 50% dead in 96 h at <0.8 mg/L. The relative order of lethality, with silver (Ag), most toxic and lithium (Li) least toxic was Ag+, Hg+, Au+, Cd, followed by As+ Be, Al, Cu, Zn, Y, Tl, Fe, La, Cr+, Ni, Co, Sb, and Li. Salts of 13 additional elements tested to Fundulus were less toxic than were salts of Li, including Rb, Si, Mo, Re, Ba, Mn, Ca, Sr, K, and Na, in that order. [Pg.334]

Gold Lithium chloride (LiCl), dimethyl sulfoxide (CH3)2SO... [Pg.135]

Krause reported the gold-catalysed cycloisomerisation of functionalised allenes in water at room temperature (Scheme 16.30)7 This reaction was catalysed by 5 mol% of HAuCU and 1 equivalent of lithium chloride was added to prevent catalyst decomposition. The reaction gave access to five- or six-membered ring oxygen or nitrogen heterocycles. The chirality of the starting material was fully transferred to the heterocycle in all the cases. [Pg.62]


See other pages where Lithium gold chloride is mentioned: [Pg.256]    [Pg.245]    [Pg.140]    [Pg.823]    [Pg.87]    [Pg.221]    [Pg.217]    [Pg.223]    [Pg.235]    [Pg.380]    [Pg.344]    [Pg.347]    [Pg.144]    [Pg.217]    [Pg.305]    [Pg.801]    [Pg.55]    [Pg.255]    [Pg.773]    [Pg.221]    [Pg.561]    [Pg.760]    [Pg.54]    [Pg.633]    [Pg.636]    [Pg.914]    [Pg.946]    [Pg.950]    [Pg.951]    [Pg.1235]    [Pg.711]    [Pg.312]    [Pg.312]    [Pg.209]    [Pg.255]    [Pg.773]    [Pg.451]   
See also in sourсe #XX -- [ Pg.141 ]




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Lithium gold chloride nitrate

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