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1.
Dalton Trans ; 45(41): 16211-16220, 2016 Oct 18.
Artigo em Inglês | MEDLINE | ID: mdl-27722477

RESUMO

Herein, the synthesis and characterisation of magnetic iron oxide-porphyrin hybrids, constituted of iron-oxide magnetic nanoparticles covalently linked to an unsymmetrically substituted meso-aryl porphyrin, are described. The methodology features for the preparation of the key unsymmetrically substituted meso-aryl porphyrin synthons are discussed, with emphasis on sustainability and in economical terms. The "NaY method" herein reported allows large scale and economical preparation, which are demonstrated by its reusability and at least two-fold yields, when compared with classical porphyrin synthetic methods and also presents a much better cost-efficiency rationale and lower environmental impact. Upon covalent linking to iron-oxide magnetic nanoparticles, the new hybrids are fully characterised by thermogravimetry/differential scanning calorimetry, transmission electron microscopy and infrared spectroscopy and their photophysical properties were measured, which demonstrate that the presence of the magnetic nanoparticle counterparts does not affect these properties, thus allowing the materials to keep the photophysical features imparted by their porphyrin counterparts.

2.
Chem Commun (Camb) ; 50(50): 6571-3, 2014 Jun 25.
Artigo em Inglês | MEDLINE | ID: mdl-24643723

RESUMO

The rationalisation of the influence of acidity and pore size of several solid oxides so that they selectively act as supports for preparation of encapsulated porphyrin hybrid materials or as catalysts for synthesis of porphyrins in solution is discussed. Encapsulated porphyrin yields are dependent on both the acidity and the material pore size, Al-MCM-41 being the best fitting solid, with Lewis acidity of 120 µmol Py per g and a pore size 30 Å. On the other hand, when the goal is the synthesis of hindered mesoarylporphyrins in solution, the best solid porous catalyst is NaY, with Lewis acidity of 510 µmol Py per g and a pore size 14 Å. This method provides an appealing efficient, reusable and scalable catalyst alternative for one-pot synthesis of meso-arylporphyrins in high yields.


Assuntos
Hidrocarbonetos Halogenados/síntese química , Ácidos de Lewis/química , Mesoporfirinas/síntese química , Óxidos/química , Dióxido de Silício/química , Compostos de Sódio/química , Ítrio/química , Catálise , Espectroscopia de Ressonância Magnética , Conformação Molecular , Estrutura Molecular , Porosidade
3.
J Hazard Mater ; 177(1-3): 407-13, 2010 May 15.
Artigo em Inglês | MEDLINE | ID: mdl-20047794

RESUMO

Two trimetallic ZnCuAl and MnCuAl hydrotalcites have been successfully synthesized by a co-precipitation method. The manganese based material was identified as a new hydrotalcite phase. Both lamellar precursors were calcined at 450 and 600 degrees C and the resulting catalysts were tested on reaction of total oxidation of toluene. The solids were characterized by X-ray diffraction, thermal analysis, atomic absorption spectroscopy, Fourier transformed infrared spectroscopy, N(2) adsorption and H(2) temperature-programmed reduction. It was found that ZnCuAl materials are composed of copper and zinc oxides supported on alumina; while MnCuAl ones comprise basically spinel phases, which were not completely identified. The catalytic behavior of the calcined samples showed that Mn hydrotalcite calcined at 450 degrees C exhibited the best catalytic performance that corresponds to 100% toluene conversion into CO(2) at about 300 degrees C.


Assuntos
Hidróxido de Alumínio/química , Substâncias Perigosas , Resíduos Industriais/prevenção & controle , Hidróxido de Magnésio/química , Tolueno/química , Hidróxido de Alumínio/síntese química , Dióxido de Carbono , Catálise , Hidróxido de Magnésio/síntese química , Manganês , Oxirredução , Temperatura , Zinco
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