SOME ASPECTS ON THE STABILITY OF METAL(II) - METHIONINE AND METAL(II) METHIONINE PENCILLAMINE (BINARY & MIXED) COMPLEXES AN PAPER ELECTROPHORETIC TECHNIQUE
Stability constants of binary [Pb(II) methionine], [UO2(II) methionine] and mixed [Pb(II) methionine penicillamine], [UO2(II) methionine penicillamine] complexes have been determined by Paper Electrophoretic Technique at ionic strength 0.1 M. The stability constants of [Pb(II) methioni...
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Sociedad Chilena de Química
2005
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oai:scielo:S0717-970720050002000142005-07-19SOME ASPECTS ON THE STABILITY OF METAL(II) - METHIONINE AND METAL(II) METHIONINE PENCILLAMINE (BINARY & MIXED) COMPLEXES AN PAPER ELECTROPHORETIC TECHNIQUETewari,B. B. Paper electrophoretic techniques Lead(II) complexes Uranyl(II) complexes Methionine Penicillamine Mixed complexes Overall mobility Stability constants Stability constants of binary [Pb(II) methionine], [UO2(II) methionine] and mixed [Pb(II) methionine penicillamine], [UO2(II) methionine penicillamine] complexes have been determined by Paper Electrophoretic Technique at ionic strength 0.1 M. The stability constants of [Pb(II) methionine penicillamine] and [UO2(II) methionine penicillamine] mixed complexes were found to be 6.60 ± 0.09 and 9.05 ± 0.13 (logarithm of stability constant values), respectively at a temperature of 35Cinfo:eu-repo/semantics/openAccessSociedad Chilena de QuímicaJournal of the Chilean Chemical Society v.50 n.2 20052005-06-01text/htmlhttp://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-97072005000200014en10.4067/S0717-97072005000200014 |
institution |
Scielo Chile |
collection |
Scielo Chile |
language |
English |
topic |
Paper electrophoretic techniques Lead(II) complexes Uranyl(II) complexes Methionine Penicillamine Mixed complexes Overall mobility Stability constants |
spellingShingle |
Paper electrophoretic techniques Lead(II) complexes Uranyl(II) complexes Methionine Penicillamine Mixed complexes Overall mobility Stability constants Tewari,B. B. SOME ASPECTS ON THE STABILITY OF METAL(II) - METHIONINE AND METAL(II) METHIONINE PENCILLAMINE (BINARY & MIXED) COMPLEXES AN PAPER ELECTROPHORETIC TECHNIQUE |
description |
Stability constants of binary [Pb(II) methionine], [UO2(II) methionine] and mixed [Pb(II) methionine penicillamine], [UO2(II) methionine penicillamine] complexes have been determined by Paper Electrophoretic Technique at ionic strength 0.1 M. The stability constants of [Pb(II) methionine penicillamine] and [UO2(II) methionine penicillamine] mixed complexes were found to be 6.60 ± 0.09 and 9.05 ± 0.13 (logarithm of stability constant values), respectively at a temperature of 35C |
author |
Tewari,B. B. |
author_facet |
Tewari,B. B. |
author_sort |
Tewari,B. B. |
title |
SOME ASPECTS ON THE STABILITY OF METAL(II) - METHIONINE AND METAL(II) METHIONINE PENCILLAMINE (BINARY & MIXED) COMPLEXES AN PAPER ELECTROPHORETIC TECHNIQUE |
title_short |
SOME ASPECTS ON THE STABILITY OF METAL(II) - METHIONINE AND METAL(II) METHIONINE PENCILLAMINE (BINARY & MIXED) COMPLEXES AN PAPER ELECTROPHORETIC TECHNIQUE |
title_full |
SOME ASPECTS ON THE STABILITY OF METAL(II) - METHIONINE AND METAL(II) METHIONINE PENCILLAMINE (BINARY & MIXED) COMPLEXES AN PAPER ELECTROPHORETIC TECHNIQUE |
title_fullStr |
SOME ASPECTS ON THE STABILITY OF METAL(II) - METHIONINE AND METAL(II) METHIONINE PENCILLAMINE (BINARY & MIXED) COMPLEXES AN PAPER ELECTROPHORETIC TECHNIQUE |
title_full_unstemmed |
SOME ASPECTS ON THE STABILITY OF METAL(II) - METHIONINE AND METAL(II) METHIONINE PENCILLAMINE (BINARY & MIXED) COMPLEXES AN PAPER ELECTROPHORETIC TECHNIQUE |
title_sort |
some aspects on the stability of metal(ii) - methionine and metal(ii) methionine pencillamine (binary & mixed) complexes an paper electrophoretic technique |
publisher |
Sociedad Chilena de Química |
publishDate |
2005 |
url |
http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-97072005000200014 |
work_keys_str_mv |
AT tewaribb someaspectsonthestabilityofmetaliimethionineandmetaliimethioninepencillaminebinaryampmixedcomplexesanpaperelectrophoretictechnique |
_version_ |
1718445350177472512 |