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10081-39-7

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10081-39-7 Usage

Chemical Properties

black-violet glittering crystals

Check Digit Verification of cas no

The CAS Registry Mumber 10081-39-7 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,0,0,8 and 1 respectively; the second part has 2 digits, 3 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 10081-39:
(7*1)+(6*0)+(5*0)+(4*8)+(3*1)+(2*3)+(1*9)=57
57 % 10 = 7
So 10081-39-7 is a valid CAS Registry Number.
InChI:InChI=1/C41H29NO/c43-41-37(31-18-8-2-9-19-31)28-36(29-38(41)32-20-10-3-11-21-32)42-39(33-22-12-4-13-23-33)26-35(30-16-6-1-7-17-30)27-40(42)34-24-14-5-15-25-34/h1-29H

10081-39-7SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 10, 2017

Revision Date: Aug 10, 2017

1.Identification

1.1 GHS Product identifier

Product name 2,6-Diphenyl-4-(2,4,6-triphenyl-1-pyridinio)phenolate

1.2 Other means of identification

Product number -
Other names 2,6-diphenyl-4-(2,4,6-triphenylpyridin-1-ium-1-yl)phenolate

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:10081-39-7 SDS

10081-39-7Synthetic route

2,6-diphenyl-p-aminophenol
50432-01-4

2,6-diphenyl-p-aminophenol

2,4,6-Triphenylpyrylium hydrogen sulfate

2,4,6-Triphenylpyrylium hydrogen sulfate

betaine 30
10081-39-7

betaine 30

Conditions
ConditionsYield
With sodium hydroxide; sodium acetate 1.) 95percent aq. EtOH, reflux, 3 h; Yield given. Multistep reaction;
N-(3,5-diphenyl-4-hydroxyphenyl)-2,4,6-triphenylpyridinium perchlorate

N-(3,5-diphenyl-4-hydroxyphenyl)-2,4,6-triphenylpyridinium perchlorate

betaine 30
10081-39-7

betaine 30

4-(2,4,6-triphenylpyridinio)-2,6-diphenylphenol
47843-41-4

4-(2,4,6-triphenylpyridinio)-2,6-diphenylphenol

betaine 30
10081-39-7

betaine 30

Conditions
ConditionsYield
With tetrabutyl ammonium fluoride
With tetrabutylammonium dihydrogen phosphate
(1,1';3',1''-terphenyl)-2'-ol
2432-11-3

(1,1';3',1''-terphenyl)-2'-ol

betaine 30
10081-39-7

betaine 30

Conditions
ConditionsYield
Multi-step reaction with 3 steps
1: 55 percent / 65percent aq. HNO3 / Ambient temperature
2: 85 percent / Na2S2O4 / aq. NaOH / 0.25 h / Heating
3: 1.) NaOAc, 2.) 5percent aq. NaOH / 1.) 95percent aq. EtOH, reflux, 3 h
View Scheme
2,6-diphenyl-4-nitrophenol
2423-73-6

2,6-diphenyl-4-nitrophenol

betaine 30
10081-39-7

betaine 30

Conditions
ConditionsYield
Multi-step reaction with 2 steps
1: 85 percent / Na2S2O4 / aq. NaOH / 0.25 h / Heating
2: 1.) NaOAc, 2.) 5percent aq. NaOH / 1.) 95percent aq. EtOH, reflux, 3 h
View Scheme
tetra(n-butyl)ammonium hydroxide
2052-49-5

tetra(n-butyl)ammonium hydroxide

N-(3,5-diphenyl-4-hydroxyphenyl)-2,4,6-triphenylpyridinium perchlorate

N-(3,5-diphenyl-4-hydroxyphenyl)-2,4,6-triphenylpyridinium perchlorate

betaine 30
10081-39-7

betaine 30

Conditions
ConditionsYield
In methanol
tetrafluoroboric acid

tetrafluoroboric acid

betaine 30
10081-39-7

betaine 30

1-(3,5-diphenyl-4-hydroxyphenyl)-2,4,6-triphenylpyridin-1-ium tetrafluoroborate

1-(3,5-diphenyl-4-hydroxyphenyl)-2,4,6-triphenylpyridin-1-ium tetrafluoroborate

Conditions
ConditionsYield
In water for 2h; Schlenk technique;99%
In water for 2h; Schlenk technique;99%
betaine 30
10081-39-7

betaine 30

1-(3,5-diphenyl-4-hydroxyphenyl)-2,4,6-triphenylpyridin-1-ium chloride

1-(3,5-diphenyl-4-hydroxyphenyl)-2,4,6-triphenylpyridin-1-ium chloride

Conditions
ConditionsYield
With hydrogenchloride In diethyl ether; dichloromethane for 0.166667h; Schlenk technique;96%
betaine 30
10081-39-7

betaine 30

Mo(N-adamant-1-yl)(CHCMe2Ph)(OTf)2(dimethoxyethane)

Mo(N-adamant-1-yl)(CHCMe2Ph)(OTf)2(dimethoxyethane)

C102H85MoN3O2(2+)*2CF3O3S(1-)

C102H85MoN3O2(2+)*2CF3O3S(1-)

Conditions
ConditionsYield
In diethyl ether; chloroform at 20℃; for 0.5h; Inert atmosphere; Glovebox;92%
betaine 30
10081-39-7

betaine 30

Mo(N-2,6-i-Pr2C6H3)(CHCMe2Ph)(OTf)2(DME)
645391-49-7

Mo(N-2,6-i-Pr2C6H3)(CHCMe2Ph)(OTf)2(DME)

C104H87MoN3O2(2+)*2CF3O3S(1-)

C104H87MoN3O2(2+)*2CF3O3S(1-)

Conditions
ConditionsYield
In diethyl ether; dichloromethane at 20℃; for 0.5h; Inert atmosphere; Glovebox;86%
betaine 30
10081-39-7

betaine 30

Mo(N-2,6-Me2-C6H3)(CHCMe2Ph)(OTf)2*dimethoxyethane

Mo(N-2,6-Me2-C6H3)(CHCMe2Ph)(OTf)2*dimethoxyethane

C100H79MoN3O2(2+)*2CF3O3S(1-)

C100H79MoN3O2(2+)*2CF3O3S(1-)

Conditions
ConditionsYield
In diethyl ether; dichloromethane at 20℃; for 0.5h; Inert atmosphere; Glovebox;78%
betaine 30
10081-39-7

betaine 30

Mo(N-2-CF3C6H4)(CHCMe2Ph)(OTf)2(dme)

Mo(N-2-CF3C6H4)(CHCMe2Ph)(OTf)2(dme)

C99H74F3MoN3O2(2+)*2CF3O3S(1-)

C99H74F3MoN3O2(2+)*2CF3O3S(1-)

Conditions
ConditionsYield
In diethyl ether; dichloromethane at 20℃; for 1h; Inert atmosphere; Glovebox;75%
betaine 30
10081-39-7

betaine 30

Mo(N-2,6-Cl2-C6H3)(CHCMe3)(OTf)2(DME)

Mo(N-2,6-Cl2-C6H3)(CHCMe3)(OTf)2(DME)

C54H42Cl2F6MoN2O7S2

C54H42Cl2F6MoN2O7S2

Conditions
ConditionsYield
In diethyl ether; dichloromethane at 20℃; for 1h; Inert atmosphere; Glovebox;75%
betaine 30
10081-39-7

betaine 30

Mo(N-2,6-Cl2-C6H3)(CHCMe3)(OTf)2(DME)

Mo(N-2,6-Cl2-C6H3)(CHCMe3)(OTf)2(DME)

C93H71Cl2MoN3O2(2+)*2CF3O3S(1-)

C93H71Cl2MoN3O2(2+)*2CF3O3S(1-)

Conditions
ConditionsYield
In diethyl ether; dichloromethane at 20℃; for 1h; Inert atmosphere; Glovebox;69%
betaine 30
10081-39-7

betaine 30

4-(2,4,6-triphenylpyridinio)-2,6-diphenylphenol
47843-41-4

4-(2,4,6-triphenylpyridinio)-2,6-diphenylphenol

Conditions
ConditionsYield
With carbon dioxide In chloroform; water at 25℃;
betaine 30
10081-39-7

betaine 30

1-(2'-hydroxy-[1,1';3',1'']terphenyl-5'-yl)-2,4,6-triphenyl-pyridinium; iodide

1-(2'-hydroxy-[1,1';3',1'']terphenyl-5'-yl)-2,4,6-triphenyl-pyridinium; iodide

Conditions
ConditionsYield
Multi-step reaction with 2 steps
1: CO2 / CHCl3; H2O / 25 °C
2: tetrabutylammonium iodide
View Scheme
betaine 30
10081-39-7

betaine 30

[Mo(NtBu)(CHCMe2Ph)(4,5-dichloro-1,3-dimethylimidazol-2-ylidene)(OTf)2]

[Mo(NtBu)(CHCMe2Ph)(4,5-dichloro-1,3-dimethylimidazol-2-ylidene)(OTf)2]

A

[Mo(NtBu)(CHCMe2Ph)(4,5-dichloro-1,3-dimethylimidazol-2-ylidene)(OTf)(2,6-Ph-4-{2,4,6-Ph-pyridinium}phenolate)][OTf]

[Mo(NtBu)(CHCMe2Ph)(4,5-dichloro-1,3-dimethylimidazol-2-ylidene)(OTf)(2,6-Ph-4-{2,4,6-Ph-pyridinium}phenolate)][OTf]

B

[Mo(NtBu)(CHCMe2Ph)(4,5-dichloro-1,3-dimethylimidazol-2-ylidene)2(THF)(2,6-Ph-4-{2,4,6-Ph-pyridinium}phenolate)][OTf]2

[Mo(NtBu)(CHCMe2Ph)(4,5-dichloro-1,3-dimethylimidazol-2-ylidene)2(THF)(2,6-Ph-4-{2,4,6-Ph-pyridinium}phenolate)][OTf]2

Conditions
ConditionsYield
In dichloromethane at -40 - 20℃; for 0.5h; Overall yield = 79 %;
betaine 30
10081-39-7

betaine 30

C69H66MoN3O(1+)*CF3O3S(1-)

C69H66MoN3O(1+)*CF3O3S(1-)

Conditions
ConditionsYield
Multi-step reaction with 3 steps
1: hydrogenchloride / dichloromethane; diethyl ether / 0.17 h / Schlenk technique
2: dichloromethane / 0.5 h / 20 °C / Schlenk technique
3: diethyl ether / 0.5 h / -35 °C / Inert atmosphere; Glovebox
View Scheme
betaine 30
10081-39-7

betaine 30

1-(3,5-diphenyl-4-hydroxyphenyl)-2,4,6-triphenylpyridin-1-ium triflate

1-(3,5-diphenyl-4-hydroxyphenyl)-2,4,6-triphenylpyridin-1-ium triflate

Conditions
ConditionsYield
Multi-step reaction with 2 steps
1: hydrogenchloride / dichloromethane; diethyl ether / 0.17 h / Schlenk technique
2: dichloromethane / 0.5 h / 20 °C / Schlenk technique
View Scheme
betaine 30
10081-39-7

betaine 30

C24BF20(1-)*C41H30NO(1+)

C24BF20(1-)*C41H30NO(1+)

Conditions
ConditionsYield
Multi-step reaction with 2 steps
1: water / 2 h / Schlenk technique
2: dichloromethane / 20 °C / Schlenk technique
View Scheme

10081-39-7Relevant articles and documents

THE POLARITY OF ALCOHOLIC ELECTROLYTE SOLUTIONS. A SYSTEMATIC STUDY

Rezende, Marcos Caroli

, p. 3513 - 3522 (1988)

The ET(30) polarity values of alcoholic salt solutions were determined for twenty salt/solvent combinations.In all cases equation correlates accurately the medium polarity with the salt concentration.The meaning of this equation is discussed in terms of possible interactions in solution.The dye (1) is shown to be a useful probe for the cationic environment of salts in solution.

Tamura et al.

, p. 2988,2989 (1973)

The positive halochromism of phenolate dyes in hydroxylic solutions of tetraalkylammonium cations

Rezende, Marcos Caroli,Dominguez, Moisés,Aracena, Andrés

body text, p. 61 - 66 (2012/03/07)

By contrast with the negative halochromic behaviour shown by phenolate betaines in the presence of alkaline and alkaline-earth cations, the addition of tetraalkylammonium salts to hydroxylic solutions of these dyes generate bathochromic shifts of their charge-transfer band. This positive halochromic behaviour by organic cations was examined systematically and its origin rationalized by nonspecific changes of the medium permittivity, and by specific dye-cation interactions in solution.

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