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632309
Magnesiumhydroxid
nanopowder, <100 nm particle size (laser PSA), 99.8% trace metals basis
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About This Item
Lineare Formel:
Mg(OH)2
CAS-Nummer:
Molekulargewicht:
58.32
EG-Nummer:
MDL-Nummer:
UNSPSC-Code:
12352302
PubChem Substanz-ID:
NACRES:
NA.23
Empfohlene Produkte
Assay
99.8% trace metals basis
Form
nanopowder
Oberflächenbereich
94.8 m2/g
Partikelgröße
<100 nm (laser PSA)
5.8-20 nm (TEM)
<50 nm (XRD)
mp (Schmelzpunkt)
350 °C (lit.)
SMILES String
O[Mg]O
InChI
1S/Mg.2H2O/h;2*1H2/q+2;;/p-2
InChIKey
VTHJTEIRLNZDEV-UHFFFAOYSA-L
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Lagerklassenschlüssel
13 - Non Combustible Solids
WGK
nwg
Flammpunkt (°F)
Not applicable
Flammpunkt (°C)
Not applicable
Persönliche Schutzausrüstung
dust mask type N95 (US), Eyeshields, Gloves
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Xiaohong Pan et al.
ACS applied materials & interfaces, 5(3), 1137-1142 (2013-01-11)
Here we reported the antibacterial effect and related mechanism of three nano-Mg(OH)(2) slurries using Escherichia coli as model bacteria. X-ray diffraction (XRD), scanning electron microscopy (SEM) and laser particle size analysis revealed that the as-synthesized Mg(OH)(2)_(MgCl2), Mg(OH)(2)_(MgSO4) and Mg(OH)(2)_(MgO) are
Andrzej Tarnawski et al.
Current pharmaceutical design, 19(1), 126-132 (2012-09-07)
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Suresh Kumar Kailasa et al.
The Analyst, 137(19), 4490-4496 (2012-08-11)
We report a dispersive liquid-liquid microextraction (LLME) method using surface modified Mg(OH)(2) nanoparticles (NPs) with oleic acid (OA) as hydrophobic affinity probes for the extraction and preconcentration of hydrophobic biomolecules prior to MALDI MS analysis. OA-capped Mg(OH)(2) NPs were characterized
Francys K V Moreira et al.
Carbohydrate polymers, 92(2), 1743-1751 (2013-02-13)
In this paper the mechanical reinforcement of nano-sized brucite, Mg(OH)(2) in a series of bionanocomposite films based on starch was investigated. Brucite nanoplates with an aspect ratio of 9.25 were synthesized by wet precipitation and incorporated into starch matrices at
Jia Zhang et al.
Journal of hazardous materials, 239-240, 128-134 (2012-09-19)
This paper describes the enhanced Cr(VI)-contaminated soil remediation via a combination of electrokinetics (EK) with a calcined-hydrotalcite-based permeable reactive barrier (PRB). First, this combination proved to be feasible, and remarkably facilitated Cr(VI) remediation in a column test. Then, lightly-to-severely (0.16-1.65
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