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The coordination centres in the complex I are evidently the oxygen atoms of the deprotonated carboxyl groups and the ... This suggests that when the ligand is coordinated its characteristic dimeric and betaine structure disappears ...
The coordination centres in the complex I are evidently the oxygen atoms of the deprotonated carboxyl groups and the ... This suggests that when the ligand is coordinated its characteristic dimeric and betaine structure disappears ...
Trang 1417
Analysis of the i.r. spectra indicates that the oxygen atoms in the pyran ring and the ether grouping do not act as donors in the coordination compounds formed . The formation of coordination compounds with ...
Analysis of the i.r. spectra indicates that the oxygen atoms in the pyran ring and the ether grouping do not act as donors in the coordination compounds formed . The formation of coordination compounds with ...
Trang 1437
In contrast to protonation , the coordination of Lit therefore affects little the geometrical electronic structure of the skeleton . The coordination of Lit to the linear isomers leads to only a slight 3 . Table 1.
In contrast to protonation , the coordination of Lit therefore affects little the geometrical electronic structure of the skeleton . The coordination of Lit to the linear isomers leads to only a slight 3 . Table 1.
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Inorganic | 1353 |
Contents | 1376 |
Activation of the solution of copperII oxide in aqueous EDTA solutions by the 1385 2683 | 1385 |
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acid aluminium ammonia analysis angle anions atoms bands bond calculated Chem chemical Chemistry chloride complex formation complexes composition compounds concentration constants containing coordination copper copper(II corresponding crystal crystal structure crystallisation curves decrease dependence described determined diagram dioxide EDTA electronic energy English translation equilibrium experimental Figure formation formed given gives halides heating hydrogen increase indicates influence infrared Inorg INORGANIC ions Khim kinetic ligand manganese(II mass metal method mixture molecular molecules Moscow Neorg observed obtained organic oxide parameters phase positions preparation present properties published range rate of solution reaction respectively salts shows similar solid solubility solution solvate solvents specimens spectra stability structure synthesis Table temperature thermal translation translation in Russ tungsten values vibrational X-ray diffraction