2005
DOI: 10.1590/s0103-50532005000500023
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Comparative study of structure: activity relationship of di and triorganotin (IV) complexes of monomethyl glutarate

Abstract: Uma série de complexos di-e tri-organoestanho(IV) de metilglutarato foram sintetizados e caracterizados por espectroscopia de RMN de 1 H, 13 C e 119 Sn, no infravermelho e Mössbauer de 119 Sn. Baseado nestas técnicas propõe-se que o ligante se encontra ligado ao estanho através do oxigênio da carbonila. Os dados revelam também que os complexos diorganoestanho(IV) são hexacoordenados, com geometria octaedrica, enquanto que os complexos triorganoestanho(IV) são pentacoordenados e possuem geometria bipiramidal… Show more

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Cited by 34 publications
(15 citation statements)
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References 29 publications
(48 reference statements)
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“…The 1 J( 119 Sn-13 C) coupling constants have been used to infer the coordination number of the tin atom 2,22 in organotin compounds. As can be seen in Table 4 …”
Section: Nmr Spectramentioning
confidence: 99%
“…The 1 J( 119 Sn-13 C) coupling constants have been used to infer the coordination number of the tin atom 2,22 in organotin compounds. As can be seen in Table 4 …”
Section: Nmr Spectramentioning
confidence: 99%
“…3) Among the most studied organotin(IV) complexes a special emphasis has been placed on the study of carboxylates as potential metallotherapeutic drugs, 4) however, a wide spectrum of biological activities such as anti-microbial, [5][6][7][8][9][10] anti-inflammatory, [11][12][13][14][15] anti-fungal, 14) cardiovascular, 5,10,16,17) anti-tuberculosis 18,19) and biocide among others remains a subject of intense study. 20) Schiff bases are of paramount importance as ligands in metal coordination chemistry as they form stable complexes with most of transition metals.…”
mentioning
confidence: 99%
“…It can be noted that the compounds with phenyl groups showed the greatest inhibitory effect on one or more types of bacteria as compared to Me and CF 3 group in the same position. 53 me direction. The withdrawing functional groups (CF 3 ) and (Ph) make the Schiff base as a poor donor ligand and decrease the stability of complexes while the electron donor group (CH 3 ) increasing the stability because they leads to increase the donor ability of Schiff base ligands.…”
Section: Antibacterial Studymentioning
confidence: 97%