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GF01838101

Iridium

wire reel, 0.5m, diameter 0.125mm, as drawn, 99.5%

Synonym(e):

Iridium

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About This Item

Empirische Formel (Hill-System):
Ir
CAS-Nummer:
Molekulargewicht:
192.22
MDL-Nummer:
UNSPSC-Code:
12141720
PubChem Substanz-ID:
NACRES:
NA.23

Assay

99.50%

Form

wire

Hersteller/Markenname

Goodfellow 018-381-01

Widerstandsfähigkeit

4.71 μΩ-cm

L × Durchm.

0.5 m × 0.125 mm

bp

4130 °C (lit.)

mp (Schmelzpunkt)

2450 °C (lit.)

Dichte

22.65 g/cm3 (lit.)

SMILES String

[Ir]

InChI

1S/Ir

InChIKey

GKOZUEZYRPOHIO-UHFFFAOYSA-N

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Paolo Tosatti et al.
Organic & biomolecular chemistry, 10(16), 3147-3163 (2012-03-13)
Since their discovery in 1997, iridium-catalysed asymmetric allylic substitutions have been developed into a broadly applicable tool for the synthesis of chiral building blocks via C-C and C-heteroatom bond formation. The remarkable generality of these reactions and the high levels
Soo Bong Han et al.
Chemical communications (Cambridge, England), (47)(47), 7278-7287 (2009-12-22)
Existing methods for enantioselective carbonyl allylation, crotylation and tert-prenylation require stoichiometric generation of pre-metallated nucleophiles, and often employ stoichiometric chiral modifiers. Under the conditions of transfer hydrogenation employing an ortho-cyclometallated iridium C,O-benzoate catalyst, enantioselective carbonyl allylations, crotylations and tert-prenylations are
Henrik Tækker Madsen et al.
Chemosphere, 109, 84-91 (2014-05-31)
Electrochemical oxidation is a promising technique for degradation of otherwise recalcitrant organic micropollutants in waters. In this study, the applicability of electrochemical oxidation was investigated concerning the degradation of the groundwater pollutant 2,6-dichlorobenzamide (BAM) through the electrochemical oxygen transfer process
Veronica Marin et al.
Chemical Society reviews, 36(4), 618-635 (2007-03-28)
The need for novel materials with luminescent properties and advanced processing features requires reliable and reproducible synthetic routes for the design of suitable materials, such as e.g. polypyridyl ruthenium(II) and iridium(III)-containing polymers. The most popular ligand for those purposes is
S Murahashi et al.
Accounts of chemical research, 33(4), 225-233 (2000-04-25)
The discovery of a new chemical reaction often leads to new applications and new chemical principles. Low-valent ruthenium and iridium hydride complexes are highly useful redox Lewis acid and base catalysts. Nitriles are activated by these catalysts and undergo reactions

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