Design and synthesis of the new bis-vainilline derivatives containing hydralazine and isoniazide moieties for the detection of trivalent metal cations

In the present work the design and synthesis of new chemosensors for the determination of metal cations represent an area of hight interest in supramolecular chemistry. The detection and cuantification is important in many fields of application such as environmental bioinorganic chemistry, develop...

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Autores principales: Quindt, M., Guntero, Vanina A., Mancini, Pedro M. E., Kneeteman, María N.
Formato: Documento de conferencia publishedVersion
Lenguaje:Inglés
Inglés
Publicado: 2019
Materias:
Acceso en línea:http://hdl.handle.net/20.500.12272/4085
Aporte de:
id I68-R174-20.500.12272-4085
record_format dspace
institution Universidad Tecnológica Nacional
institution_str I-68
repository_str R-174
collection RIA - Repositorio Institucional Abierto (UTN)
language Inglés
Inglés
topic chemosensor
composite
Cu2+ ion
spellingShingle chemosensor
composite
Cu2+ ion
Quindt, M.
Guntero, Vanina A.
Mancini, Pedro M. E.
Kneeteman, María N.
Design and synthesis of the new bis-vainilline derivatives containing hydralazine and isoniazide moieties for the detection of trivalent metal cations
topic_facet chemosensor
composite
Cu2+ ion
description In the present work the design and synthesis of new chemosensors for the determination of metal cations represent an area of hight interest in supramolecular chemistry. The detection and cuantification is important in many fields of application such as environmental bioinorganic chemistry, developmental biology, clinical toxicology, waste management, and bioremediation of radionuclides and metal ions[1]. Besides, there is a growing concern for determining trivalent metal cations as Fe3+, Cr3+ and Al3+ which are highly toxic. Classic chemosensors for Cr3+ and Fe3+ interfere between them, consequently, the development of systems that allow selective and sensitive detection is desirable. It is known that derivatives of bis-vainilline that contain semicarbazide or hydrazines can act as sensors of cations. In that direction two new probes were developed from bis-vainilline condensed in positions 3- and 3’- with hydrazoline and isoniazide, using fluorescence as analytical signal for detection of analytes, because fluorimetry is rapidly performed, nondestructive and highly sensitive.
format Documento de conferencia
publishedVersion
Documento de conferencia
author Quindt, M.
Guntero, Vanina A.
Mancini, Pedro M. E.
Kneeteman, María N.
author_facet Quindt, M.
Guntero, Vanina A.
Mancini, Pedro M. E.
Kneeteman, María N.
author_sort Quindt, M.
title Design and synthesis of the new bis-vainilline derivatives containing hydralazine and isoniazide moieties for the detection of trivalent metal cations
title_short Design and synthesis of the new bis-vainilline derivatives containing hydralazine and isoniazide moieties for the detection of trivalent metal cations
title_full Design and synthesis of the new bis-vainilline derivatives containing hydralazine and isoniazide moieties for the detection of trivalent metal cations
title_fullStr Design and synthesis of the new bis-vainilline derivatives containing hydralazine and isoniazide moieties for the detection of trivalent metal cations
title_full_unstemmed Design and synthesis of the new bis-vainilline derivatives containing hydralazine and isoniazide moieties for the detection of trivalent metal cations
title_sort design and synthesis of the new bis-vainilline derivatives containing hydralazine and isoniazide moieties for the detection of trivalent metal cations
publishDate 2019
url http://hdl.handle.net/20.500.12272/4085
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