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102525-11-1

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102525-11-1 Usage

Description

1. Iridium-catalyzed borylation of thiophenes: versatile, synthetic elaboration founded on selective C-H functionalization. 2. Harnessing C-H borylation/deborylation for selective deuteration, synthesis of boronate esters, and late stage functionalization.

Uses

Catalyst for C-H activation/borylation

Check Digit Verification of cas no

The CAS Registry Mumber 102525-11-1 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,0,2,5,2 and 5 respectively; the second part has 2 digits, 1 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 102525-11:
(8*1)+(7*0)+(6*2)+(5*5)+(4*2)+(3*5)+(2*1)+(1*1)=71
71 % 10 = 1
So 102525-11-1 is a valid CAS Registry Number.
InChI:InChI=1/C9H7.C8H12.Ir/c1-2-5-9-7-3-6-8(9)4-1;1-2-4-6-8-7-5-3-1;/h1-7H;1-2,7-8H,3-6H2;/b;2-1-,8-7-;

102525-11-1 Well-known Company Product Price

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  • Aldrich

  • (685011)  (1,5-Cyclooctadiene)5-indenyl)iridium(I)  

  • 102525-11-1

  • 685011-250MG

  • 1,253.07CNY

  • Detail
  • Aldrich

  • (685011)  (1,5-Cyclooctadiene)5-indenyl)iridium(I)  

  • 102525-11-1

  • 685011-1G

  • 4,063.41CNY

  • Detail

102525-11-1SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 19, 2017

Revision Date: Aug 19, 2017

1.Identification

1.1 GHS Product identifier

Product name 1,5-CYCLOOCTADIENE(H5-INDENYL)IRIDIUM (I)

1.2 Other means of identification

Product number -
Other names -

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:102525-11-1 SDS

102525-11-1Relevant articles and documents

Kinetics and mechanism of indene C-H bond activation by [(COD)Ir(μ2-OH)]2

Ahmed, Tonia S.,Tonks, Ian A.,Labinger, Jay A.,Bercaw, John E.

, p. 3322 - 3326 (2013)

The hydroxy-bridged dimer [(COD)Ir(μ2-OH)]2 (COD = 1,5-cyclooctadiene) cleanly cleaves C-H bonds in indene and cyclopentadiene to produce (COD)Ir(η3-indenyl) and (COD)Ir(η5-C 5H5), respectively. The kinetics of the formation of (COD)Ir(η3-indenyl) are consistent with a mechanism that involves coordination of indene to [(COD)Ir(μ2-OH)]2 followed by rate-determining C-H activation from the iridium dimer-indene unit. Transition-state analysis of the Ir and Rh hydroxy dimers indicates that the C-H activation proceeds through a direct deprotonation of indene by the M-OH unit rather than a stepwise oxidative addition/reductive elimination mechanism. The crystal structure of [(COD)Ir]5(μ4-O)(μ3- O)(μ2-OH), a dehydration product of [(COD)Ir(μ2-OH)] 2, is presented.

Synthesis and reaction chemistry of (η5-indenyl)(cyclooctadiene)iridium: Migration of indenyl from iridium to cyclooctadiene

Merola, Joseph S.,Kacmarcik, Raymond T.

, p. 778 - 784 (2008/10/08)

(η5-Indenyl)(cyclooctadiene)iridium was synthesized in high yield from chloro(cyclooctadiene)iridium dimer and lithium indenide. The reaction chemistry of the above compound was investigated with respect to the displacement of the cyclooctadiene with various nucleophiles. Thus, (η5-indenyl)dicarbonyliridium could be synthesized in high yield by treating the cyclooctadiene complex with carbon monoxide at atmospheric pressure. However, the addition of trimethylphosphine, PMe3, to the cyclooctadiene complex resulted not in the displacement of cyclooctadiene but in the migration of indene from iridium to cyclooctadiene forming (2-indenylcyclooct-5-en-1-yl)tris(trimethylphosphine)iridium, I, quantitatively. A single-crystal X-ray structural determination of I was carried out and confirmed the migration of indene to the cyclooctadiene. I crystallizes in the orthorhombic space group P212121 with a = 10.019 (1) A?, b = 18.836 (3) A?, c = 29.602 (4) A?, V = 5586 (2) A?3, and Z = 8. The syntheses of a related series of (trimethylsilyl-substituted indenyl)iridium complexes are also reported along with some suggestions for the mechanism of the iridium to cyclooctadiene indenyl migration.

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