Crossed and Linked Histories of Tetrapyrrolic Macrocycles and Their Use for Engineering Pores within Sol-Gel Matrices

The crossed and linked histories of tetrapyrrolic macrocycles, interwoven with new research discoveries, suggest that Nature has found in these structures a way to ensure the continuity of life. For diverse applications porphyrins or phthalocyanines must be trapped inside solid networks, but due to...

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Main Authors: Miguel A. García-Sánchez, Fernando Rojas-González, E. Carmina Menchaca-Campos, Salvador R. Tello-Solís, R. Iris Y. Quiroz-Segoviano, Luis A. Diaz-Alejo, Eduardo Salas-Bañales, Antonio Campero
Format: Article
Language:English
Published: MDPI AG 2013-01-01
Series:Molecules
Subjects:
Online Access:http://www.mdpi.com/1420-3049/18/1/588
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spelling doaj-dd4fd75c78b24f77855fced3d1e03eac2020-11-25T01:15:43ZengMDPI AGMolecules1420-30492013-01-0118158865310.3390/molecules18010588Crossed and Linked Histories of Tetrapyrrolic Macrocycles and Their Use for Engineering Pores within Sol-Gel MatricesMiguel A. García-SánchezFernando Rojas-GonzálezE. Carmina Menchaca-CamposSalvador R. Tello-SolísR. Iris Y. Quiroz-SegovianoLuis A. Diaz-AlejoEduardo Salas-BañalesAntonio CamperoThe crossed and linked histories of tetrapyrrolic macrocycles, interwoven with new research discoveries, suggest that Nature has found in these structures a way to ensure the continuity of life. For diverse applications porphyrins or phthalocyanines must be trapped inside solid networks, but due to their nature, these compounds cannot be introduced by thermal diffusion; the sol-gel method makes possible this insertion through a soft chemical process. The methodologies for trapping or bonding macrocycles inside pristine or organo-modified silica or inside ZrO2 xerogels were developed by using phthalocyanines and porphyrins as molecular probes. The sizes of the pores formed depend on the structure, the cation nature, and the identities and positions of peripheral substituents of the macrocycle. The interactions of the macrocyclic molecule and surface Si-OH groups inhibit the efficient displaying of the macrocycle properties and to avoid this undesirable event, strategies such as situating the macrocycle far from the pore walls or to exchange the Si-OH species by alkyl or aryl groups have been proposed. Spectroscopic properties are better preserved when long unions are established between the macrocycle and the pore walls, or when oligomeric macrocyclic species are trapped inside each pore. When macrocycles are trapped inside organo-modified silica, their properties result similar to those displayed in solution and their intensities depend on the length of the alkyl chain attached to the matrix. These results support the prospect of tuning up the pore size, surface area, and polarity inside the pore cavities in order to prepare efficient catalytic, optical, sensoring, and medical systems. The most important feature is that research would confirm again that tetrapyrrolic macrocycles can help in the development of the authentic pore engineering in materials science.http://www.mdpi.com/1420-3049/18/1/588tetrapyrrole macrocyclesporphyrinphthalocyaninesol-gelsilicaalkoxidepore sizespecific surface
collection DOAJ
language English
format Article
sources DOAJ
author Miguel A. García-Sánchez
Fernando Rojas-González
E. Carmina Menchaca-Campos
Salvador R. Tello-Solís
R. Iris Y. Quiroz-Segoviano
Luis A. Diaz-Alejo
Eduardo Salas-Bañales
Antonio Campero
spellingShingle Miguel A. García-Sánchez
Fernando Rojas-González
E. Carmina Menchaca-Campos
Salvador R. Tello-Solís
R. Iris Y. Quiroz-Segoviano
Luis A. Diaz-Alejo
Eduardo Salas-Bañales
Antonio Campero
Crossed and Linked Histories of Tetrapyrrolic Macrocycles and Their Use for Engineering Pores within Sol-Gel Matrices
Molecules
tetrapyrrole macrocycles
porphyrin
phthalocyanine
sol-gel
silica
alkoxide
pore size
specific surface
author_facet Miguel A. García-Sánchez
Fernando Rojas-González
E. Carmina Menchaca-Campos
Salvador R. Tello-Solís
R. Iris Y. Quiroz-Segoviano
Luis A. Diaz-Alejo
Eduardo Salas-Bañales
Antonio Campero
author_sort Miguel A. García-Sánchez
title Crossed and Linked Histories of Tetrapyrrolic Macrocycles and Their Use for Engineering Pores within Sol-Gel Matrices
title_short Crossed and Linked Histories of Tetrapyrrolic Macrocycles and Their Use for Engineering Pores within Sol-Gel Matrices
title_full Crossed and Linked Histories of Tetrapyrrolic Macrocycles and Their Use for Engineering Pores within Sol-Gel Matrices
title_fullStr Crossed and Linked Histories of Tetrapyrrolic Macrocycles and Their Use for Engineering Pores within Sol-Gel Matrices
title_full_unstemmed Crossed and Linked Histories of Tetrapyrrolic Macrocycles and Their Use for Engineering Pores within Sol-Gel Matrices
title_sort crossed and linked histories of tetrapyrrolic macrocycles and their use for engineering pores within sol-gel matrices
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2013-01-01
description The crossed and linked histories of tetrapyrrolic macrocycles, interwoven with new research discoveries, suggest that Nature has found in these structures a way to ensure the continuity of life. For diverse applications porphyrins or phthalocyanines must be trapped inside solid networks, but due to their nature, these compounds cannot be introduced by thermal diffusion; the sol-gel method makes possible this insertion through a soft chemical process. The methodologies for trapping or bonding macrocycles inside pristine or organo-modified silica or inside ZrO2 xerogels were developed by using phthalocyanines and porphyrins as molecular probes. The sizes of the pores formed depend on the structure, the cation nature, and the identities and positions of peripheral substituents of the macrocycle. The interactions of the macrocyclic molecule and surface Si-OH groups inhibit the efficient displaying of the macrocycle properties and to avoid this undesirable event, strategies such as situating the macrocycle far from the pore walls or to exchange the Si-OH species by alkyl or aryl groups have been proposed. Spectroscopic properties are better preserved when long unions are established between the macrocycle and the pore walls, or when oligomeric macrocyclic species are trapped inside each pore. When macrocycles are trapped inside organo-modified silica, their properties result similar to those displayed in solution and their intensities depend on the length of the alkyl chain attached to the matrix. These results support the prospect of tuning up the pore size, surface area, and polarity inside the pore cavities in order to prepare efficient catalytic, optical, sensoring, and medical systems. The most important feature is that research would confirm again that tetrapyrrolic macrocycles can help in the development of the authentic pore engineering in materials science.
topic tetrapyrrole macrocycles
porphyrin
phthalocyanine
sol-gel
silica
alkoxide
pore size
specific surface
url http://www.mdpi.com/1420-3049/18/1/588
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