Search results for "Pore system"

showing 5 items of 5 documents

Synthesis And Sorptive Properties Of Dodecasil 1 H With An Acessible Pore System

1994

Abstract The synthesis of Dodecasil 1H was studied in the system SiO2/1-adamantylamine/NH3/water with the objective of controlling the particle size and the morphology of the crystals. Since nucleation occurs in a very early stage of the synthesis, the heating rate to the final temperature have a strong influence on both parameters. Using seed crystals and such a heating programme, the expensive template 1-adamantylamine can be reduced to so small amounts, that a nearly template free pore system is achieved. The emptiness of the pore system was demonstrated from adsorption measurement using He and H2.

CrystallographyTemplate freeAdsorptionMorphology (linguistics)Materials scienceChemical engineeringNucleationPore systemParticle sizeSeed crystal
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Large monolithic silica-based macrocellular foams with trimodal pore system.

2003

Silica-based materials with hierarchical pore systems at three different length scales (small mesopores–large mesopores–macropores) have been prepared through a nanotectonic approach by using mesoporous nanoparticles as building blocks; the resulting materials present a highly accessible foam-like architecture and can be prepared as large monoliths. Huerta Morillo, Lenin Jose, Lenin.Huerta@uv.es ; Latorre Saborit, Julio, Julio.Latorre@uv.es ; Beltran Porter, Aurelio, Aurelio.Beltran@uv.es ; Beltran Porter, Daniel, Daniel.Beltran@uv.es ; Amoros del Toro, Pedro Jose, Pedro.Amoros@uv.es

Materials scienceMonolithic silica-based ; Trimodal pore system ; Different length scalesUNESCO::QUÍMICAMetals and AlloysNanoparticleMineralogyPore systemGeneral ChemistryUNESCO::QUÍMICA::Química macromolecular:QUÍMICA [UNESCO]CatalysisSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsChemical engineeringMaterials ChemistryCeramics and Composites:QUÍMICA::Química macromolecular [UNESCO]Trimodal pore systemMesoporous materialDifferent length scalesMonolithic silica-basedChemical communications (Cambridge, England)
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Silica-based powders and monoliths with bimodal pore systems

2002

Porous pure and doped silicas with pore sizes at two length scales (meso/macroporous) have been prepared and shaped both as powders and monoliths through a one-pot surfactant assisted procedure by using a simple template agent and starting from atrane complexes as inorganic precursors. El Haskouri, Jamal, Jamal.Haskouri@uv.es ; Latorre Saborit, Julio, Julio.Latorre@uv.es ; Beltran Porter, Aurelio, Aurelio.Beltran@uv.es ; Beltran Porter, Daniel, Daniel.Beltran@uv.es ; Amoros del Toro, Pedro Jose, Pedro.Amoros@uv.es

MonolithsBimodal pore systemsUNESCO::QUÍMICASilica based:QUÍMICA::Química macromolecular [UNESCO]Silica based ; Monoliths ; Inorganic precursors ; Bimodal pore systemsUNESCO::QUÍMICA::Química macromolecular:QUÍMICA [UNESCO]Inorganic precursors
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Reconstruction of the internal structure of the pore system of a complex dinosaur eggshell (Megaloolithus siruguei)

2013

Despite the many reconstructions of fossil material that have recently appeared in the literature, dinosaur eggshells have never been reconstructed using computing techniques. Using the EMAC 3-D modelling methodology, we reconstruct a section of the Late Cretaceous Megaloolithus siruguei eggshell, which has a particularly complex pore system, exhibiting an intricate network of vertical, oblique, and horizontal pores.

PaleontologySection (archaeology)PaleontologyMineralogyPore systemEggshellBiologyQE701-760CretaceousPaleontologíadinosaur eggshell 3-d reconstruction palaeoclimate
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Silica-based macrocellular foam monoliths with hierarchical trimodal pore systems

2005

Abstract Silica-based large monoliths exhibiting a trimodal hierarchical pore system have been successfully prepared through a nanotectonic approach starting from sub-micro/nanometric mesoporous particles (as building blocks), and using a polyurethane foam as macrotemplate. Large trimodal pieces with macrocellular like interconnected macropores in the micrometer range are a mineralized replica of the polyurethane foam. Textural large-mesopores/macropores (in the 20–70 nm range) have their origin in the inter-particle voids. The small intra-particle mesopore system (with pore diameters around 2–3 nm) is due to the supramolecular templating effect of the surfactant.

Pore sizeMaterials scienceMacroporeNanoparticleMineralogyPore systemGeneral ChemistryCondensed Matter PhysicsMicrometrechemistry.chemical_compoundchemistryChemical engineeringGeneral Materials SciencePorous mediumMesoporous materialPolyurethaneSolid State Sciences
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