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Magnesium Aluminum Oxide Nanoparticle Dispersion

Magnesium Aluminum Oxide Nanodispersion

CAS #:

Linear Formula:

MgO·Al2O3

MDL Number:

MFCD00049475

EC No.:

235-100-5

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PRODUCT Product Code ORDER SAFETY DATA TECHNICAL DATA
Magnesium Aluminum Oxide Nanoparticle Dispersion
MGAL-OX-01-NPD
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Magnesium Aluminum Oxide Nanoparticle Dispersion Properties

Compound Formula

Al2MgO4

Molecular Weight

142.27

Appearance

Liquid

Melting Point

Varies by solvent

Boiling Point

Varies by solvent

Density

Varies by solvent

Exact Mass

141.927777

Monoisotopic Mass

141.927777

Magnesium Aluminum Oxide Nanoparticle Dispersion Health & Safety Information

Signal Word N/A
Hazard Statements N/A
Hazard Codes N/A
Transport Information N/A
MSDS / SDS

About Magnesium Aluminum Oxide Nanoparticle Dispersion

Magnesium Aluminum Oxide Nanoparticle Dispersions are suspensions of magnesium aluminum oxide nanoparticles in water or various organic solvents such as ethanol or mineral oil. American Elements manufactures oxide nanopowders and nanoparticles with typical particle sizes ranging from 10 to 200nm and in coated and surface functionalized forms. Our nanodispersion and nanofluid experts can provide technical guidance for selecting the most appropriate particle size, solvent, and coating material for a given application. We can also produce custom nanomaterials tailored to the specific requirements of our customers upon request.

Magnesium Aluminum Oxide Nanoparticle Dispersion Synonyms

Aluminate(1-), dioxo-, magnesium (2:1); Magnesium bis[dioxoaluminate(1-)]; Magnesium bis[dioxoaluminate(1-)], Alumina magnesia, Cernel I, Dialuminum magnesium tetraoxide, Dialuminium magnesium tetraoxide, Magnesium aluminate, dialuminum magnesium oxygen(-2) anion, Magnesium Aluminum Oxide nanopowder suspension, aqueous Magnesium Aluminum Oxide nanoparticle solution, Magnesium Aluminum Oxide nanofluid

Magnesium Aluminum Oxide Nanoparticle Dispersion Chemical Identifiers

Linear Formula

MgO·Al2O3

Pubchem CID

9855501

MDL Number

MFCD00049475

EC No.

235-100-5

Beilstein Registry No.

N/A

IUPAC Name

dialuminum magnesium oxygen(2-)

SMILES

O=[Al-]=O.O=[Al-]=O.[Mg+2]

InchI Identifier

InChI=1S/2Al.Mg.4O/q2*-1;+2;;;;

InchI Key

DTCHAFPTQLGIKY-UHFFFAOYSA-N

Packaging Specifications

Typical bulk packaging includes palletized plastic 5 gallon/25 kg. pails, fiber and steel drums to 1 ton super sacks in full container (FCL) or truck load (T/L) quantities. Research and sample quantities and hygroscopic, oxidizing or other air sensitive materials may be packaged under argon or vacuum. Shipping documentation includes a Certificate of Analysis and Safety Data Sheet (SDS). Solutions are packaged in polypropylene, plastic or glass jars up to palletized 440 gallon liquid totes, and 36,000 lb. tanker trucks.

Related Elements

See more Aluminum products. Aluminum (or Aluminum) (atomic symbol: Al, atomic number: 13) is a Block P, Group 13, Period 3 element with an atomic weight of 26.9815386. It is the third most abundant element in the earth's crust and the most abundant metallic element. Aluminum Bohr Model Aluminum's name is derived from alumina, the mineral from which Sir Humphrey Davy attempted to refine it from in 1812. It wasn't until 1825 that Aluminum was first isolated by Hans Christian Oersted. Aluminum is a silvery gray metal that possesses many desirable characteristics. It is light, nonmagnetic and non-sparking. It stands second among metals in the scale of malleability, and sixth in ductility. It is extensively used in many industrial applications where a strong, light, easily constructed material is needed. Elemental AluminumAlthough it has only 60% of the electrical conductivity of copper, it is used in electrical transmission lines because of its light weight. Pure aluminum is soft and lacks strength, but alloyed with small amounts of copper, magnesium, silicon, manganese, or other elements it imparts a variety of useful properties. Aluminum was first predicted by Antoine Lavoisierin 1787 and first isolated by Friedrich Wöhler in 1827.

Magnesium Bohr ModelSee more Magnesium products. Magnesium (atomic symbol: Mg, atomic number: 12) is a Block S, Group 2, Period 3 element with an atomic mass of 24.3050. The number of electrons in each of Magnesium's shells is [2, 8, 2] and its electron configuration is [Ne] 3s2. The magnesium atom has a radius of 160 pm and a Van der Waals radius of 173 pm. Magnesium was discovered by Joseph Black in 1775 and first isolated by Sir Humphrey Davy in 1808. Magnesium is the eighth most abundant element in the earth's crust and the fourth most common element in the earth as a whole. Elemental MagnesiumIn its elemental form, magnesium has a shiny grey metallic appearance and is an extremely reactive. It is can be found in minerals such as brucite, carnallite, dolomite, magnesite, olivine and talc. Commercially, magnesium is primarily used in the creation of strong and lightweight aluminum-magnesium alloys, which have numerous advantages in industrial applications. The name "Magnesium" originates from a Greek district in Thessaly called Magnesia.

Recent Research

Preparation of Mesoporous Basic Mixed Metal Oxides through Assembly of Monodispersed Mg-Al Layered Double Hydroxide Nanoparticles., Oka, Yuya, Kuroda Yoshiyuki, Matsuno Takamichi, Kamata Keigo, Wada Hiroaki, Shimojima Atsushi, and Kuroda Kazuyuki , Chemistry, 2017 May 17, (2017)

Color-center production and recovery in electron-irradiated magnesium aluminate spinel and ceria., Costantini, Jean-Marc, Lelong Gérald, Guillaumet Maxime, Weber William J., Takaki Seiya, and Yasuda Kazuhiro , J Phys Condens Matter, 2016 Jun 20, Volume 28, Issue 32, p.325901, (2016)

Surfactant-modified flowerlike layered double hydroxide-coated magnetic nanoparticles for preconcentration of phthalate esters from environmental water samples., Zhao, Xiaoli, Liu Shuangliu, Wang Peifang, Tang Zhi, Niu Hongyun, Cai Yaqi, Wu Fengchang, Wang Hao, Meng Wei, and Giesy John P. , J Chromatogr A, 2015 Oct 2, Volume 1414, p.22-30, (2015)

Organofunctional silane modification of aluminum-doped zinc oxide surfaces as a route to stabilization., Matthews, Rachael, Glasser Emily, Sprawls Samuel, French Roger H., Peshek Tim, Pentzer Emily, and Martin Ina , ACS Appl Mater Interfaces, 2017 May 01, (2017)

Tattoo removal by Q-switched yttrium aluminium garnet laser: client satisfaction., K Carlsen, Hutton, Esmann J, and Serup J , J Eur Acad Dermatol Venereol, 2017 May, Volume 31, Issue 5, p.904-909, (2017)

Dietary Supplementation of Magnesium Oxide (MgO) Nanoparticles for Better Survival and Growth of the Freshwater Prawn Macrobrachium rosenbergii Post-larvae., Srinivasan, Veeran, Bhavan Periyakali Saravana, Rajkumar Gopalan, Satgurunathan Thangavelu, and Muralisankar Thirunavukkarasu , Biol Trace Elem Res, 2017 May, Volume 177, Issue 1, p.196-208, (2017)

Atomic scale structure of amorphous aluminum oxyhydroxide, oxide and oxycarbide films probed by very high field (27)Al nuclear magnetic resonance., Baggetto, L, Sarou-Kanian V, Florian P, Gleizes A N., Massiot D, and Vahlas C , Phys Chem Chem Phys, 2017 Mar 15, Volume 19, Issue 11, p.8101-8110, (2017)

Delta manganese dioxide nanosheets decorated magnesium wire for the degradation of methyl orange., Zhang, Yan, Zheng Tian Xu, Hu Yao Bo, Guo Xiao Luo, Peng Hui Hua, Zhang Yu Xin, Feng Li, and Zheng Huai Li , J Colloid Interface Sci, 2017 Mar 15, Volume 490, p.226-232, (2017)

Facile design of ultra-thin anodic aluminum oxide membranes for the fabrication of plasmonic nanoarrays., Hao, Qi, Huang Hao, Fan Xingce, Hou Xiangyu, Yin Yin, Li Wan, Si Lifang, Nan Haiyan, Wang Huaiyu, Mei Yongfeng, et al. , Nanotechnology, 2017 Mar 10, Volume 28, Issue 10, p.105301, (2017)

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