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Modulacion de la mesoestructura y composicion en silices nanoparticuladas con porosidad jerarquica

Posted on:2015-01-18Degree:DrType:Thesis
University:Universitat de Valencia (Spain)Candidate:Morales Tatay, Jose ManuelFull Text:PDF
GTID:2471390017994108Subject:Materials science
Abstract/Summary:
The objectives of this thesis were: 1) Ensure the development of a reproducible method of synthesis of nanoparticulate bimodal silicas (NBS), UVM-7 type, to enable fine and independent control of both pore systems, intra- and interparticle. Is intended to confirm that by controlling the physicochemical procedural variables as the concentration of surfactant and the dielectric constant of the reaction medium, along with a strategy of well defined and easy synthesis, can lead to the obtainment of a NBS material showing characteristics topological significantly different. 2) The synthesis of new bimodal mesoporous nanocrystalline materials, UVM-7 type, using a cheap source of silicon and simplifying the maximum synthesis. Starting from a cheap inorganic precursor such as sodium silicate, seeks a path of simple, reproducible, fast and with the least possible number of synthesis reaction steps with a view to future production at industrial level of the mesoporous silica nanoparticulate. 3) A detailed characterization of the new material called UVM-10. Check the similarities and differences of this nanoparticulate mesoporous silica obtained from a cheap source of silicon with respect to the reference materials (UVM-7 and MCM-41). The study of UVM-10 was carried out by all mesoporous solids characterization techniques available in the ICMUV. 4) Within a characterization and adequacy of the UVM-10 for future application as catalyst support, have studied possible routes of synthesis and subsequent optimization that will produce the UVM-10 silica doped with various hetero (Al and Ti). 5) Chemical knowledge transfer has acquired the ability to obtain a nanoparticulate hierarchical bimodal porosity from a silicon source but condensed by a synthesis route elapses in homogeneous phase material. This material renamed UVM-12 type silica. 6) Finally, it has been suggested a comparative thermal stability between the various silicas (UVM-7, UVM-UVM-10 and 12). In general, the main mood of the work has been divided into two parts; in the case of the UVM-7, the maximum understanding of the processes involved in the synthesis (especially hydrolysis, condensation and reconstitution of silica) and study how efficient procedural regulation of two basic physicochemical variables: the concentration of surfactant and dielectric constant of the reaction medium. In a second part, the development of new materials following the premises of reducing the synthesis, simplify the process and eliminate environmentally harmful reagents.;We can conclude that: The one-UVM-7 UVM-10 silicas and combine all the advantages associated with mesopores short in length, interconnected with a hierarchical porosity and larger scale. 2-for the first time has been modulated size pore two systems independently with a single surfactant by one-pot synthesis type. 3-were first prepared NBS type silicas from sodium silicate with appreciable yield and textural properties similar to those presented by the UVM-7 silica to which we have called UVM-10 type. Also has been modulated intra- and interparticle porosity also using a single template agent. It has combined this new low-cost via preparative with the inclusion of substantial amounts of aluminum and titanium as hetero without altering the NBS organization. 4-Modifying the order of addition of reagents with respect to the employee in the synthesis of the UVM-10 silicas, we managed synthesized by a one-pot strategy a new family, silicas UVM-12, which combines advantages of its two predecessors (UVM UVM-10 -7). Was also optimized the incorporation of heteroatoms (Al and Ti) which modify the nature of the mesopore wall, keeping the NBS type organization. 5-Ne has prepared a new family of NBS silicas, UVM-13, using a template to generate single agent hierarchical pore two systems, used a source of solid fumed silica as silica. We modulated six-wall size NBS type silicas from about 1.9 nm (UVM-7) to 2.9 (UVM-13) through 2.5 (UVM-10). The importance of this parameter is that a greater thickness have higher thermal stability and this point could alleviate to some extent the deficiency of mesoporous silicas on zeolites.;Understanding the reactions involved in the various processes of synthesis is allowing direct our preparative chemistry for materials with specific characteristics, chemical and structurally homogeneous and reproducibly. These features become necessary and indispensable requirements if we consider the possibility of using these silicas NBS as a platform or support more complex structures (theranostics materials, catalysts, composites, etc.), or if we want to scale their synthesis thinking about possible transfers system productive sectors. The new UVM-10 and UVM-12 supports could improve performance, especially in those cases where required (for the conditions) thermal or hydrothermal stability superior. (Abstract shortened by UMI.).
Keywords/Search Tags:Synthesis, UVM-10, NBS, UVM-7, Silicas, Nanoparticulate
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