1344-28-1

  • Product Name:Aluminum oxide
  • Molecular Formula:Al2O3
  • Purity:99%
  • Molecular Weight:101.961
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Product Details;

CasNo: 1344-28-1

Molecular Formula: Al2O3

Appearance: white odorless crystalline powder

Quality products make an important contribution to long-term revenue and profitability. We supply top purity Aluminum oxide 1344-28-1 with cheap price.

1.What is the Aluminum oxide ?

Aluminum oxide is a conventional metal oxide nanoparticle. Oral sub-chronic exposure to Aluminum oxide or zinc oxide nanoparticles has hepato-renal toxicity. The toxicities of Aluminum oxide and/or zinc oxide NPs mediated through different correlated pathways. 

aluminum isopropoxide
555-31-7

aluminum isopropoxide

aluminum oxide
1333-84-2,1344-28-1

aluminum oxide

Conditions
Conditions Yield
In water; isopropyl alcohol; toluene; at 265 ℃; for 14h; under 45004.5 - 75007.5 Torr;
 
hydrolysis;;
 
reduced-pressure chemical vapor deposition (N2, N2/H2, N2/O2 or N2/H2O atmoisphere, 200-380°C, total gas flow 1000 ml/min);
 
With water; In propan-1-ol; pptn. on H2O addn., polymer addn. either with H2O or after hydrolysis step, drying, calcination (773 K, 24 h); surface area and porosity depending on polymer type, its amount, and method of addition;
 
With polyethylene glycol; water; In propan-1-ol; pptn. on H2O addn., polymer addn. either with H2O or after hydrolysis step, drying, calcination (773 K, 24 h); surface area and porosity depending on polymer type, its amount, and method of addition;
 
With water; In propan-1-ol; pptn. on H2O addn., polymer addn. either with H2O or after hydrolysis step, drying, calcination (773 K, 24 h); surface area and porosity depending on polymer type, its amount, and method of addition;
 
With water; Polyvinyl alcohol; In propan-1-ol; pptn. on H2O addn., polymer addn. either with H2O or after hydrolysis step, drying, calcination (773 K, 24 h); surface area and porosity depending on polymer type, its amount, and method of addition;
 
With water; In ethanol; water; hydrolyzing Al-compd. dissolved in dried EtOH with distilled water; evapn., suspending of residue in distilled water and boiling for 1 h, evapn.;
 
With water; In neat (no solvent); slow hydrolysis of aluminium isopropoxide (placed in a porcelein dish) by atmospheric moisture, solid transferred to a silica crucible, dried in an air oven, 100 ° C, 12 h, calcined in a furnace, 600 ° C, 6 h;
 
With water; In propan-1-ol; pptn. on H2O addn., drying, calcination (773 K, 24 h); surface area and porosity depending on polymer type, its amount, and method of addition;
 
With water; In not given; hydrolysis, calcination of the obtained ppt. (800°C, 6 h); predominant γ-Al2O3;
 
With oxygen; In gaseous matrix; chemical vapor deposition (polycrystalline Pt or single-crystal Si substrate, 623 K, N2 carrier gas);
 
With air; In cyclohexane; dissoln. of Al compd. in C6H12, room temp.; stirring, 20-30 min; spraying through nozzle; freezing in stirred liq. nitrogen; decanting; drying by sublimation; calcining in flowing air at 300-800.degree;
 
With air; In not given; Al(OC3H7)3 hydrolysed, heated at 600°C for 24 h, pressed into disc, crushed, sieved, heated at 800°C for 4 h in air;
 
In gas; byproducts: AlO(OH), propene, H2O; thermal decompn. at 300-360°C, further products propane, isopropanol, acetone; elem. anal.; Kinetics;
 
In gaseous matrix; chemical vapor deposition (N2 carrier gas, total flow rate 1000 ml/min,silicon substrate, 250-450°C=;
 
In ethanol; soln. of metal compds. sprayed onto substrate keeping over 400°C by Kavan, L. Graetzel, M., Electrochim. Acta 1995, 40, 643; annealed at 500°C for 1 h, analyzed by XRD; metal oxide layer obtained;
 
In water; hydrolysis, calcination (550°C) according to Lahousse, C., Aboulayt, A., Mauge, F., Bachelier, J. and Lavalley, J. C., J. Mol. Catal. 74,283 (1993).;
 
In water; hydrolyzation (85°C, 30 min) with water, drying (room temp., 24 h, 110°C, 12 h), calcination (500°C, 5 h) in air flow;
 
In ethanol; water; hydrolysis, pptn. of aluminium hydroxide, drying (130°C, 6 h);
 
In neat (no solvent); Electric Arc; low-temp. plasma deposition, pyrolysis, 290 and 460°C, atmospheric pressure, annealing (510°C, 15 min);
 
In neat (no solvent); thermal decompn. at 360°C, calcination at 600°C;
 
In water; isopropyl alcohol; calcination (600°C, 16 h;
 
In propan-1-ol; dissolving under stirring, water slow addn., slow agitation (24 h), filtration, washing (water), drying (373 K, 24 h), calcination (773 K, 24 h);
 
In octane; CVD on Si wafer at 300-475°C; soln. of Al isopropoxide in n-octane vaporized at 210°C; carrier gas: Ar; deposition pressure: 1.2 Torr; annealed in O2 for 1 h; Kinetics;
 
With Pluronic P123 triblock copolymer; In not given; addn. of Pluronic P123 to a soln. of aluminum isopropoxide with or without polystyrene beads, slow evapn., calcination;
 
hydrolyzing; washing, drying;
 
In water; purified liquid poured into deionized water, stirred, form gel of aluminum hydroxide; hydroxide decomposed in air at 850°C;
 
With water; In water; hydrolysis; washing with water and drying at 120°C;
 
With H2O; In water; hydrolysis react., pptd. Al(OH)3 filtered, washed thoroughly, cut into cakes, dried at 120°C for 24 h, activated at 500°C in a stream of pure air for another 24 h; crushed, powdered and sieved to 40-60 mesh size;
 
hydrogenchloride; In water; stirred under N2 at 170-250 °C, evapd., calcined at 1200 °C for 2 h;
 
With H2O; In water; Al isopropoxide addn. to water, heating (90°C, 2 h, vigorous stirring), HCl addn., boiling, dip coating (Si3N4 substrate), firing (1500°C, 10 h); scanning electron microscopy;
 
In isopropyl alcohol; (N2), Al isopropoxide refluxing in isopropanol( (overnight), H2O/isopropanol dropwise addn. (vigorous stirring), refluxing (1 h), evapn. (30°C), drying (105°C, overnight), calcination (400, 600, 800, or1000°C, 6 h, air); X-ray diffraction;
 
With lauric acid; water; In propan-1-ol; Al-hydroxide suspn. prepd. by hydrolysis of Al-isopropoxide with water in propanol; suspn. stirred for 1 h and then lauric acid added slowly; mixt. aged for 24 h and heated at 110°C for 2 d; ppt.filtered, washed with ethanol and dried; compd. calcined at temp. of 450°C with temp. ramp of 1°C/min under N2 (<200°C) and air at (>200°C);
 
In further solvent(s); High Pressure; according to Iwamoto, S.; Inoue, M. J. Jpn. Pet. Inst. 2008, 51, 143; aluminum triisopropoxide suspended in diethylenetriamine; placed in autoclave; diethylenetriamine added; purged with N2; heated (300°C, 2 h); cooled to room temp.; washed with acetone; air-dried; calcined (700°C, 30 min);
 
aluminum isopropoxide; With nitric acid; In ethanol; for 5h;
In ethanol; at 60 ℃; for 96h;
 
aluminum isopropoxide; With nitric acid; In ethanol; for 5h;
at 60 ℃; for 48h;
at 900 ℃; for 10h; Calcination;
 
aluminum isopropoxide; With cetyltrimethylammonim bromide; In water; isopropyl alcohol; toluene; at 20 ℃; for 29.5h;
at 500 ℃; for 5h; Calcination;
 
aluminum isopropoxide; With nitric acid; In ethanol; at 20 ℃; for 5h;
at 60 ℃; for 48h; Calcination;
 
aluminum isopropoxide; With nitric acid; In ethanol; at 20 ℃; for 5h;
at 400 ℃; for 4h; Calcination;
 
With Pluronic P104; In ethanol; at 20 ℃; for 5h;
 
aluminum isopropoxide; With ammonium hydroxide; cis-Octadecenoic acid; at 79.84 - 179.84 ℃; for 53h;
at 549.84 ℃; Calcination;
 
aluminum isopropoxide; With nitric acid; In ethanol; at 60 ℃; for 48h;
at 20 - 800 ℃; Calcination;
 
aluminum isopropoxide; With nitric acid; In ethanol; for 12h;
at 400 ℃; for 2h; Calcination;
 
aluminum isopropoxide; With nitric acid; In ethanol; at 20 ℃; for 5h;
at 700 ℃; for 4h; Calcination;
 
aluminum isopropoxide; With nitric acid; In ethanol; at 60 ℃; for 48h;
at 700 ℃; for 4h; Calcination;
 
With water; at 550 ℃; for 2h;
 
aluminum oxide
1333-84-2,1344-28-1

aluminum oxide

Conditions
Conditions Yield
at 500 ℃; for 30h; under 7.50075E-05 Torr; Purification / work up;
 

2.What is the CAS number for Aluminum oxide ?

The CAS number of Aluminum oxide is 1344-28-1.

More information of Aluminum oxide 1344-28-1 are:

CAS Number

1344-28-1

Density

3.95-4.1 g/cm3

Melting Point

2040 °C

Boiling Point

2980 °C

Flash Point

2980°C

HS CODE

2818200000

PSA

0.00000

LogP

0.31860

3.What are another words for Aluminum oxide ?

Synonyms for Aluminum oxide 1344-28-1:AD 998;AES 11C;AES 22S;AES-T;AF 115;AFL 204AB3;AG 507C;AGX (oxide);AHP 200(oxide);AKP 008;AKP 100;AKP 20;AKP 28;AKP 48 (oxide);AKP 53;AKP 700;AKP-G;AKP-G005;AKP-G 020;AKP-G 030;AKP-HP;AL 15-1;AL 15-2;AL 160SG-III;AL 160SG3;AL 160SG4;AL 200;AL 203-05;AL 203C;AL 20SD;AL23;AL 23 (oxide);AL31-03;AL 33;AL 3945E;AL 41;activated alumina;1067-2M;202P1;24A;272LA-A5;A 12 (metal oxide);A 12-4;A 1203C;A 13;A 13M;A 14 (alumina);A 152GR;A 152SG;A16;A 16SG;A 16UG;AA 03;AA 10;AA 2;AA 3;AA 400G;AC 11;AC 11K;AC 11R;Aluminium Hydroxide;

4.What is the molecular formula of Aluminum oxide?

The chemical formula of  Aluminum oxide is Al2O3 which containing 2 Aluminum atoms and 3 Oxygen atoms,and the molecular weight of  Aluminum oxide is 101.961.

5.What is Aluminum oxide (1344-28-1) used for?

Aluminum oxide nanoparticles are high in purity, and have a small particle size and uniform structure. Unlike the previous complicated and expensive methods, large-scale regular and uniform nanopillars are easily and economically achieved by the pattern transfer of anodized aluminum oxide templates.

InChI:InChI=1/2Al.3O/q2*+3;3*-2

Relevant articles related to Aluminum oxide:

Article

Source

An experimental study on stability and thermal conductivity of water-graphene oxide/aluminum oxide nanoparticles as a cooling hybrid nanofluid

,International Journal of Heat and Mass Transfer Volume 145, December 2019, 118751

This experimental study investigated the thermal conductivity of the hybrid nanofluid of water–graphene oxide (GO) nanostructure/aluminum oxide (Al2O3) nanoparticles at a temperature range of 25–50 °C and volume fractions of 0.1, 0.25, 0.5, 0.75, and 1%.

Hepato-renal toxicity of oral sub-chronic exposure to aluminum oxide and/or zinc oxide nanoparticles in rats

,Toxicology Reports Volume 6, 2019, Pages 336-346

The co-exposure to both nanoparticles results in synergistic effects. From these results, we can conclude that co-exposure to aluminum oxide nanoparticles and zinc oxide nanoparticles results in more pronounced hepatorenal toxicities and systemic inflammation.

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