textural properties of hybrid biomedical materials made from extracts of tournefortia hirsutissima l. imbibed and deposited on mesoporous and microporous materials

textural properties of hybrid biomedical materials made from extracts of tournefortia hirsutissima l. imbibed and deposited on mesoporous and microporous materials

;Miguel Ángel Hernández;Fernando Rojas;Roberto Portillo;Martha Alicia Salgado;Vitalii Petranovskii;Karla Quiroz
reproductive biology and endocrinology : rb&e 2016 Vol. 2016 pp. -
137
hernndez2016journaltextural

Abstract

Our research group has developed a group of hybrid biomedical materials potentially useful in the healing of diabetic foot ulcerations. The organic part of this type of hybrid materials consists of nanometric deposits, proceeding from the Mexican medicinal plant Tournefortia hirsutissima L., while the inorganic part is composed of a zeolite mixture that includes LTA, ZSM-5, clinoptilolite, and montmorillonite (PZX) as well as a composite material, made of CaCO3 and montmorillonite (NABE). The organic part has been analyzed by GC-MS to detect the most abundant components present therein. In turn, the inorganic supports were characterized by XRD, SEM, and High Resolution Adsorption (HRADS) of N2 at 76 K. Through this latter methodology, the external surface area of the hybrid materials was evaluated; besides, the most representative textural properties of each substrate such as total pore volume, pore size distribution, and, in some cases, the volume of micropores were calculated. The formation and stabilization of nanodeposits on the inorganic segments of the hybrid supports led to a partial blockage of the microporosity of the LTA and ZSM5 zeolites; this same effect occurred with the NABE and PZX substrates.

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159124
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10.1155/2016/1274817
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