1970
DOI: 10.1002/9780470166130.ch1
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Dimethyl Sulfoxide in Inorganic Chemistry

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1978
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Cited by 79 publications
(12 citation statements)
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“…The spectra are presented in Figure 3 for the pure DMSO, 0.1 M NdCl 3 in DMSO, and 1 M NdCl 3 in DMSO. Dimethyl sulfoxide has a sulfonyl group and the normal absorption of the S=O bond occurs at 1050 cm −1 [13,14], as confirmed in Figure 3. Metals can bond to DMSO either through its oxygen or its sulfur [13,15].…”
Section: Ftir Study Of Ndcl 3 and Dmso Solutionsmentioning
confidence: 67%
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“…The spectra are presented in Figure 3 for the pure DMSO, 0.1 M NdCl 3 in DMSO, and 1 M NdCl 3 in DMSO. Dimethyl sulfoxide has a sulfonyl group and the normal absorption of the S=O bond occurs at 1050 cm −1 [13,14], as confirmed in Figure 3. Metals can bond to DMSO either through its oxygen or its sulfur [13,15].…”
Section: Ftir Study Of Ndcl 3 and Dmso Solutionsmentioning
confidence: 67%
“…Dimethyl sulfoxide has a sulfonyl group and the normal absorption of the S=O bond occurs at 1050 cm −1 [13,14], as confirmed in Figure 3. Metals can bond to DMSO either through its oxygen or its sulfur [13,15]. If the bonding is to the sulfur, the metal donates electrons from its π orbitals into an empty π orbital on the DMSO ligand, thereby increasing the S-O bond order.…”
Section: Ftir Study Of Ndcl 3 and Dmso Solutionsmentioning
confidence: 67%
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“…This coordination ability can be as a monodentate ligand by donating a pair of electrons to the cations through atom of the S-O bond and also by hydrogen bonding. 48 Therefore DMF seems to be a weaker eld ligand compared to DMSO but stronger than acetone. For the aprotic solvents therefore, the solvent coordination ability follows the same trend as its Gutmann donor number.…”
Section: Vibrational Bands Observedmentioning
confidence: 99%