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Merck

229393

Sigma-Aldrich

Aluminum chloride hydrate

99.999% trace metals basis

Synonim(y):

Aluminium trichloride hydrate, Aluminum(3+) trichloride hydrate, Trichloroaluminum hydrate

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About This Item

Wzór liniowy:
AlCl3·xH2O
Numer CAS:
Masa cząsteczkowa:
133.34 (anhydrous basis)
Numer WE:
Numer MDL:
Kod UNSPSC:
12352302
Identyfikator substancji w PubChem:
NACRES:
NA.23

ciśnienie pary

1 mmHg ( 100 °C)

Próba

99.999% trace metals basis

Postać

crystalline

skład

Degree of hydration, 6-7

przydatność reakcji

reagent type: catalyst
core: aluminum

zanieczyszczenia

≤15.0 ppm Trace Metal Analysis

mp

100 °C (dec.) (lit.)

gęstość

2.398 g/mL at 25 °C (lit.)

Zastosowanie

battery manufacturing

ciąg SMILES

[H]O[H].Cl[Al](Cl)Cl

InChI

1S/Al.3ClH.H2O/h;3*1H;1H2/q+3;;;;/p-3

Klucz InChI

CAYKLJBSARHIDI-UHFFFAOYSA-K

Opis ogólny

Aluminum chloride hydrate is a highly reactive compound that has various applications in different fields. It is commonly used as a catalyst in chemical reactions, including the polymerization of olefins and the Friedel-Crafts reactions, and is known for its Lewis acid properties.

Zastosowanie

Aluminum chloride hydrate can be used as a:
  • Precursor to synthesize high surface area alumina aerogels by sol-gel processing method.
  • Catalyst for Friedel-Crafts alkylation of indoles.
  • Dopant to synthesize Al-doped ZnO thin films by ultrasonic spray pyrolysis.
  • Starting material to synthesize Boehmite nanoparticles with controlledmorphology.
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Piktogramy

Corrosion

Hasło ostrzegawcze

Danger

Zwroty wskazujące rodzaj zagrożenia

Klasyfikacja zagrożeń

Skin Corr. 1B

Kod klasy składowania

8A - Combustible corrosive hazardous materials

Klasa zagrożenia wodnego (WGK)

WGK 1

Temperatura zapłonu (°F)

Not applicable

Temperatura zapłonu (°C)

Not applicable


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Dokumenty związane z niedawno zakupionymi produktami zostały zamieszczone w Bibliotece dokumentów.

Odwiedź Bibliotekę dokumentów

Hongyan Sun et al.
Journal of environmental sciences (China), 82, 39-46 (2019-05-28)
In order to evaluate the influence of particle size and particle concentration on the coagulation process, two kinds of particle suspensions, nanoparticles and microparticles, were employed to investigate the effect of particle size on coagulation mechanisms with varying coagulation parameters.
Lei Gao et al.
Journal of photochemistry and photobiology. B, Biology, 177, 56-61 (2017-10-27)
A facile, convenient, and green method for the synthesis of BAgNPs by using basalin is proposed in this work. The capping of the basalin on the surface of BAgNP was confirmed by the zeta potential and FTIR findings. Further, we
Jürgen Bauer et al.
Chemical communications (Cambridge, England), 48(84), 10407-10409 (2012-09-20)
In this communication, synthesis of a rhodium alane Lewis adduct, [Cp(Me(3)P)(2)Rh→AlCl(3)], is reported. Given that direct synthesis using aluminium trichloride failed, a convenient transmetallation reaction was applied. The new MOLP was analysed by single crystal X-ray diffraction, multinuclear NMR spectroscopy
Amira Zaky et al.
BMC neuroscience, 14, 26-26 (2013-03-19)
Chronic administration of Aluminum is proposed as an environmental factor that may affect several enzymes and other biomolecules related to neurotoxicity and Alzheimer's disease (AD). APE1 a multifunctional protein, functions in DNA repair and plays a key role in cell
Dharmalingam Prakash et al.
Neuromolecular medicine, 15(1), 192-208 (2013-01-15)
Aluminum (Al) is an environmental neurotoxin that affects cerebral functions and causes health complications. However, the role of Al in arbitrating glia homeostasis and pathophysiology remains obscure. Astrocyte, microglia activation (reactive gliosis), and associated inflammatory events play a decisive role

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