The synthesis of monodispersed magnetic silica nanoparticles (MSN) is described using a water-in-oil reverse microemulsion system that does not require the use of co-surfactants. Sodium silicate, Tween 20 as a neutral surfactant and 1-butanol as the organic phase were used. There are several advantages of the proposed method including a saturation magnetization value of 10 emu/g for the particles obtained, uniformity of size and that they are easily functionalized to bind urease covalently. Moreover, the intra-day, inter-day and long-term stability results confirm that the procedure was successful and the enzyme-linked MSNs were stable over repeated uses and storage retaining more than 75 % activity after 4 months.Fil: Tuttolomondo, María V...
Silica nanoparticles for controlled release applications have been produced by the reaction of tetra...
Core-shell magnetic mesoporous silica microspheres (Magn-MSMs) with tunable large mesopores in the s...
A method to encapsulate DNA in heat-resistant and inert magnetic particles was developed. An inexpen...
Enzymes are versatile biocatalysts with major advantages of ultrahigh reaction selectivity and speci...
Enzymes are versatile biocatalysts with major advantages of ultrahigh reaction selectivity and speci...
Uniformly sized silica-coated magnetic nanoparticles (magnetite@silica) are synthesized in a simple ...
A novel method to synthesize amino-silane modified magnetic silica supports was reported for affinit...
Ferrite magnetic nanoparticles (MNPs) were functionalized with a variety of silanes bearing differen...
The development of a magnetically separable and highly stable enzyme system, using nanoparticles and...
This paper presents a facile method for preparation of silica coated monodisperse superparamagnetic ...
In this paper, we report a novel synthesis and selective bioseparation of the composite of Fe3O4 mag...
Le diagnostic moléculaire est un diagnostic basé sur l’analyse des acides nucléiques nécessite incon...
Water-in-oil (W/O) microemulsion is a well-suitable confined reacting medium for the synthesis of st...
Hypothesis Porous magnetic silica beads are promising materials for biological and environmental app...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
Silica nanoparticles for controlled release applications have been produced by the reaction of tetra...
Core-shell magnetic mesoporous silica microspheres (Magn-MSMs) with tunable large mesopores in the s...
A method to encapsulate DNA in heat-resistant and inert magnetic particles was developed. An inexpen...
Enzymes are versatile biocatalysts with major advantages of ultrahigh reaction selectivity and speci...
Enzymes are versatile biocatalysts with major advantages of ultrahigh reaction selectivity and speci...
Uniformly sized silica-coated magnetic nanoparticles (magnetite@silica) are synthesized in a simple ...
A novel method to synthesize amino-silane modified magnetic silica supports was reported for affinit...
Ferrite magnetic nanoparticles (MNPs) were functionalized with a variety of silanes bearing differen...
The development of a magnetically separable and highly stable enzyme system, using nanoparticles and...
This paper presents a facile method for preparation of silica coated monodisperse superparamagnetic ...
In this paper, we report a novel synthesis and selective bioseparation of the composite of Fe3O4 mag...
Le diagnostic moléculaire est un diagnostic basé sur l’analyse des acides nucléiques nécessite incon...
Water-in-oil (W/O) microemulsion is a well-suitable confined reacting medium for the synthesis of st...
Hypothesis Porous magnetic silica beads are promising materials for biological and environmental app...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
Silica nanoparticles for controlled release applications have been produced by the reaction of tetra...
Core-shell magnetic mesoporous silica microspheres (Magn-MSMs) with tunable large mesopores in the s...
A method to encapsulate DNA in heat-resistant and inert magnetic particles was developed. An inexpen...