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517747 Aldrich

Aluminum oxide, mesoporous

MSU-X (wormhole), average pore size 3.8 nm

Synonym: Alumina

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Properties

Related Categories Aluminum, Materials Science, Mesoporous Materials, Metal and Ceramic Science, Nanomaterials,
description   molecular sieve
InChI Key   TWNQGVIAIRXVLR-UHFFFAOYSA-N
form   powder
particle size   5.65 μm (avg.)
pore size   3.8 nm average pore size
Featured Industry   Battery Manufacturing

Description

Packaging

5 g in glass bottle

Price and Availability

Suggested Laboratory Gloves


Laboratory GlovesThis substance has been tested against several types of hand protection for CE compliance. Click below to find the recommended gloves for handling this product.




Ultra-High Purity Inorganics
Safety & Documentation

Safety Information

RIDADR 
NONH for all modes of transport
WGK Germany 
nwg
RTECS 
BD1200000
Protocols & Articles

Articles

Bio-Inspired “Green” Synthesis of Nanomaterials and their Applications

Dr. Siddharth V. Patwardhan Department of Chemical and Process Engineering University of Strathclyde, 75 Montrose Street Glasgow G1 1XJ, UK Email: Siddharth.Patwardhan@strath.ac.uk
Keywords: Adsorption, Agriculture, Apoptosis, Cancer, Catalysis, Condensations, Cosmetics, Deposition, Environmental, Enzyme activity, Green chemistry, Hydration reaction, Immobilization, Microwave synthesis, Nanomaterials, Pharmaceutical, Precipitation, Reductions, Separation, Sol-gel, Solvents

Changing the Landscape of Environmental and Energy Research Through Novel Nanoscale Materials

Energy and environmental catalysts (EECs) form a major group of materials that will continue to drive the growth of industry and research investments. The EEC market is estimated to be between $10−16...
Santanu Chaudhuri
Material Matters, 2012 v7, n4
Keywords: Adsorption, Alternative energy, Applications, Automotive, Catalysis, Diffusion, Environmental, Gene expression, Immobilization, Infrared spectroscopy, Metal organic frameworks, Methods, Molecular probes, Oxidations, Protocols, Reductions, Search, Spectroscopy, Substitutions, Support, Surface Science, Type

Cooking up Nanostructured Mesoporous Materials

Vitaly Budarin, James H. Clark*, Rafael Luque, Robin White Green Chemistry Centre, Department of Chemistry, University of York, Heslington, York YO10 5DD, UK *Email: jhc1@york.ac.uk
Keywords: Adsorption, Alkylations, Aminations, Brominations, Catalysis, Chromatography, Elemental analysis, Environmental, Esterifications, Etherifications, Green chemistry, Heck Reaction, Infrared spectroscopy, Mass spectrometry, Nuclear magnetic resonance spectroscopy, Separation, Silylations, Spectroscopy

Mesoporous Materials

Materials with specially ordered porous features on the nano-scale have important applications in optics, catalysis, drug delivery systems, coatings, cosmetics, bio-separation, diagnostics, gas-separ...
Keywords: Absorption, Adsorption, Asymmetric synthesis, Catalysis, Chromatography, Cosmetics, Diffraction, Diffusion, Gas chromatography, High performance liquid chromatography, Industries, Ion Exchange, Materials Science, Metal organic frameworks, Microscopy, Nanotechnology, Pharmaceutical, Proteomics, Scanning electron microscopy, Separation, Substitutions, Transmission electron microscopy, X-Ray diffraction

Synthesis of Mesoporous Materials

Mespoporous materials, also known as mesoporous molecular sieves, are a class of 3D-nanostructures with well-defined mesoscale (2–50 nm diameter) pores and surface areas up to 1000 m2/g.1 In terms of...
Material Matters 2008, 3.1, 17.
Keywords: Absorption, Applications, Catalog, Catalysis, Condensations, Diffusion, Material Matters, Methods, Sol-gel

Peer-Reviewed Papers
15

References

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