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Aluminum Zirconate

CAS #:

Linear Formula:

Al2O3 • (ZrO2)3

MDL Number:


EC No.:



(2N) 99% Aluminum Zirconate
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(3N) 99.9% Aluminum Zirconate
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(4N) 99.99% Aluminum Zirconate
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(5N) 99.999% Aluminum Zirconate
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Aluminum Zirconate Properties

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Aluminum Zirconate Health & Safety Information

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About Aluminum Zirconate

Oxide IonAluminum Zirconate (Aluminum Zirconium Oxide) is a highly insoluble thermally stable Aluminum source suitable for glass, optic and ceramic applications. Oxide compounds are not conductive to electricity. However, certain perovskite structured oxides are electronically conductive finding application in the cathode of solid oxide fuel cells and oxygen generation systems. They are compounds containing at least one oxygen anion and one metallic cation. They are typically insoluble in aqueous solutions (water) and extremely stable making them useful in ceramic structures as simple as producing clay bowls to advanced electronics and in light weight structural components in aerospace and electrochemical applications such as fuel cells in which they exhibit ionic conductivity. Metal oxide compounds are basic anhydrides and can therefore react with acids and with strong reducing agents in redox reactions. Aluminum Zirconium Oxide is also available in forms such as pellets, pieces, powders, sputtering targets, and nanoparticles (from American Elements' nanoscale production facilities). See Nanotechnology for more nanotechnology applications information. High purity, submicron and nanopowder forms may be considered. Typical and custom packaging is available, as is additional research, technical and safety (MSDS) data. Please contact us for information on lead time and pricing above

Aluminum Zirconate Synonyms

Aluminum zirconium oxide; Dialuminium trizirconium nonaoxide; Aluminium Zirconium Oxide

Aluminum Zirconate Chemical Identifiers

Linear Formula

Al2O3 • (ZrO2)3

Pubchem CID


MDL Number


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Beilstein Registry No.



dialuminum; oxygen(2-); zirconium(4+)



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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.

See more Zirconium products. Zirconium (atomic symbol: Zr, atomic number: 40) is a Block D, Group 4, Period 5 element with an atomic weight of 91.224. Zirconium Bohr ModelThe number of electrons in each of Zirconium's shells is 2, 8, 18, 10, 2 and its electron configuration is [Kr] 4d2 5s2. The zirconium atom has a radius of 160 pm and a Van der Waals radius of 186 pm. Zirconium was discovered by Martin Heinrich Klaproth in 1789 and first isolated by Jöns Jakob Berzelius in 1824. In its elemental form, zirconium has a silvery white appearance that is similar to titanium. Zirconium's principal mineral is zircon (zirconium silicate). Elemental ZirconiumZirconium is commercially produced as a byproduct of titanium and tin mining and has many applications as a opacifier and a refractory material. It is not found in nature as a free element. The name of zirconium comes from the mineral zircon, the most important source of zirconium, and from the Persian wordzargun, meaning gold-like.

Recent Research

Spray-Dried Sodium Zirconate: A Rapid Absorption Powder for CO2 Capture with Enhanced Cyclic Stability., Bamiduro, Faith, Ji Guozhao, Brown Andy P., Dupont Valerie A., Zhao Ming, and Milne Steven J. , ChemSusChem, 2017 May 09, Volume 10, Issue 9, p.2059-2067, (2017)

Perovskite-type titanate zirconate as photocatalyst for textile wastewater treatment., Ferrari-Lima, A M., Ueda A C., Bergamo E A., Marques R G., Ferri E A. V., Pinto C S., Pereira C A. A., Yassue-Cordeiro P H., and Souza R P. , Environ Sci Pollut Res Int, 2017 May, Volume 24, Issue 14, p.12529-12537, (2017)

Large Electrocaloric Effect in Relaxor Ferroelectric and Antiferroelectric Lanthanum Doped Lead Zirconate Titanate Ceramics., Lu, Biao, Li Peilian, Tang Zhenhua, Yao Yingbang, Gao Xingsen, Kleemann Wolfgang, and Lu Sheng-Guo , Sci Rep, 2017 Mar 27, Volume 7, p.45335, (2017)

Strongly Enhanced Piezoelectric Response in Lead Zirconate Titanate Films with Vertically Aligned Columnar Grains., Nguyen, Minh D., Houwman Evert P., Dekkers Matthijn, and Rijnders Guus , ACS Appl Mater Interfaces, 2017 Mar 22, Volume 9, Issue 11, p.9849-9861, (2017)

Tuning of large piezoelectric response in nanosheet-buffered lead zirconate titanate films on glass substrates., Chopra, Anuj, Bayraktar Muharrem, Nijland Maarten, Elshof Johan E. ten, Bijkerk Fred, and Rijnders Guus , Sci Rep, 2017 Mar 21, Volume 7, Issue 1, p.251, (2017)

Temperature Dependence of Domain Contributions as a Function of Aging in Soft and Hard Lead Zirconate Titanate Piezoelectric Ceramics., S Qaisar, Adam, Comyn Tim P., and Bell Andrew J. , IEEE Trans Ultrason Ferroelectr Freq Control, 2017 Jun, Volume 64, Issue 6, p.1023-1028, (2017)

Temperature-dependent transport and hysteretic behaviors induced by interfacial states in MoS2 field-effect transistors with lead-zirconate-titanate ferroelectric gating., Sun, Yilin, Xie Dan, Zhang Xiaowen, Xu Jianlong, Li Xinming, Li Xian, Dai Ruixuan, Li Xiao, Li Peilian, Gao Xingsen, et al. , Nanotechnology, 2017 Jan 27, Volume 28, Issue 4, p.045204, (2017)

Demonstrating the potential of yttrium-doped barium zirconate electrolyte for high-performance fuel cells., Bae, Kiho, Jang Dong Young, Choi Hyung Jong, Kim Donghwan, Hong Jongsup, Kim Byung-Kook, Lee Jong-Ho, Son Ji-Won, and Shim Joon Hyung , Nat Commun, 2017 Feb 23, Volume 8, p.14553, (2017)

Zirconium-Catalyzed Asymmetric Carboalumination of Unactivated Terminal Alkenes., Xu, Shiqing, and Negishi Ei-Ichi , Acc Chem Res, 2016 Sep 29, (2016)

Mechanoluminescence Study of Europium Doped CaZrO3 Phosphor., Tiwari, Neha, Dubey Vikas, and Kuraria R K. , J Fluoresc, 2016 May 16, (2016)


June 23, 2017
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