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768-95-6 Usage

Outline

1-adamantanol is also known as 1-hydroxide adamantane, 1-tricyclo [3.3.1.1 (3.7)] decyl alcohol. At room temperature, it is white crystalline powder with the melting point higher than 240 ℃. It is soluble in organic solvents and insoluble in water with sublimation property. It can be used for the manufacture of synthetic adamantane derivatives and adapalene. It can react with vinylidene chloride to generate 1-adamantane acetic acid. 1-adamantyl acetate can further undergo bromination and hydrolyzed into 3-hydroxy-1-adamantyl acetate which can further react with vinylidene chloride to give 1, 3-adamantane di-acetic acid. 1-adamantanol can have Friedel-Crafts alkylation reaction acetanilide in the 98% sulfuric acid medium at room temperature for direct synthesis of 1, 3-bis (4-acetylamino-phenyl) adamantane which can undergo alkaline hydrolysis for synthesis of 1, 3 bis (4-aniline) adamantane. The synthetic route has many advantages including relative high reaction yield and easy purification, etc., therefore greatly facilitating the synthesis of 1, 3-diaryl adamantane derivatives. The above information is edited by the lookchem of Dai Xiongfeng.

Uses

Different sources of media describe the Uses of 768-95-6 differently. You can refer to the following data:
1. 1-adamantanol can be used as the intermediate for synthesis of adamantanes derivatives. For example, it can be used for the manufacture of synthetic adamantane derivatives and adapalene. It can react with vinylidene chloride to give 1-adamantane acetic acid.
2. 1-Adamantanol was used in the preparation of 1,3-adamantanediol. It is used in the manufacture of synthetic adamantane derivatives and adapalene.

Synthesis Reference(s)

Synthetic Communications, 19, p. 2061, 1989 DOI: 10.1080/00397918908052598Tetrahedron Letters, 28, p. 1941, 1987 DOI: 10.1016/S0040-4039(00)96015-5

Purification Methods

If 2-adamantanol is a suspected impurity, then dissolve the substance (10g) in acetone (100mL) and add Jones's reagent [CrO3 (10.3g) in H2O (30mL)], then conc H2SO4 (8.7mL) is added dropwise (turns green in colour) until excess reagent is present (slight red colour). Stir overnight, decant the acetone solution from the Cr salts and adamantan-2-one, dry (Na2SO4) and evaporate to dryness. The residue (ca 7g) is chromatographed through Al2O3 (250g) and washed with 50% *benzene/pet ether (b 40-60o), then 100% Et2O (to remove any adamantan-2-one present) and the 1-adamantanol is then eluted with 5% MeOH in Et2O. The eluate is evaporated, and the residue is recrystallised from pet ether (b 30-60o) at -70o, m 287.2-288.5o. It also crystallises from MeOH and can be sublimed in vacuo. It has characteristic IR, max 3640, 1114, 1086, 982 and 930cm-1. [Schleyer & Nicholas J Am Chem Soc 83 182 1961.] [Beilstein 6 IV 391.] Alternatively, if free from the 2-isomer, dissolve it in tetrahydrofuran, dilute with H2O to precipitate the alcohol. Collect, dry and sublime it in a vacuum at 130o. [Stetter et al. Chem Ber 92 1629 1959.]

Check Digit Verification of cas no

The CAS Registry Mumber 768-95-6 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 7,6 and 8 respectively; the second part has 2 digits, 9 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 768-95:
(5*7)+(4*6)+(3*8)+(2*9)+(1*5)=106
106 % 10 = 6
So 768-95-6 is a valid CAS Registry Number.
InChI:InChI=1/C10H16O/c11-10-4-7-1-8(5-10)3-9(2-7)6-10/h7-9,11H,1-6H2

768-95-6 Well-known Company Product Price

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  • Alfa Aesar

  • (A10209)  1-Adamantanol, 99%   

  • 768-95-6

  • 10g

  • 275.0CNY

  • Detail
  • Alfa Aesar

  • (A10209)  1-Adamantanol, 99%   

  • 768-95-6

  • 50g

  • 1349.0CNY

  • Detail
  • Alfa Aesar

  • (A10209)  1-Adamantanol, 99%   

  • 768-95-6

  • 250g

  • 6037.0CNY

  • Detail

768-95-6SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 12, 2017

Revision Date: Aug 12, 2017

1.Identification

1.1 GHS Product identifier

Product name adamantan-1-ol

1.2 Other means of identification

Product number -
Other names 1-Adamantol

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:768-95-6 SDS

768-95-6Synthetic route

1-iodoadamantane
768-93-4

1-iodoadamantane

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With tert-butyldibutyltin chloride; sodium cyanoborohydride In tert-butyl alcohol at 33℃; for 18h; Ultrasound with 20 KHz and bubbling of air;100%
With 2,2'-azobis(isobutyronitrile); PVS; N-ethylpiperidinium hypophosphite In 1,4-dioxane; water at 100℃; for 0.5h;72%
With PVS; (CH3)3N(+)(CH2)15CH3*H2PO2(-); 4,4'-dicyano-4,4'-azo-di-valeric acid In water at 100℃; for 1h;70%
adamantane
281-23-2

adamantane

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With Fe(AAEMA)3; oxygen; isovaleraldehyde In 1,2-dichloro-ethane under 760 Torr; for 60h; Ambient temperature;99%
With oxone; 1,1,1-trifluoro-2-propanone; sodium hydrogencarbonate In dichloromethane; water at 0 - 25℃; under 3878.71 Torr; for 0.0222222h; Reagent/catalyst; Temperature; Solvent;99%
With water; bromine for 1h; Ambient temperature;95%
1-Adamantanecarboxylic acid
828-51-3

1-Adamantanecarboxylic acid

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With sodium tetrahydroborate; [4,4’-bis(1,1-dimethylethyl)-2,2’-bipyridine-N1,N1‘]bis [3,5-difluoro-2-[5-(trifluoromethyl)-2-pyridinyl-N]phenyl-C]iridium(III) hexafluorophosphate; oxygen; caesium carbonate In dichloromethane at 40℃; for 40h; Irradiation;99%
With manganese(IV) oxide; sulfuric acid at 25 - 30℃;82%
Stage #1: 1-Adamantanecarboxylic acid With dipotassium hydrogenphosphate; oxygen; 9-(2-mesityl)-10-methylacridinium perchlorate In chloroform at 20℃; for 48h; Schlenk technique; Irradiation; Green chemistry;
Stage #2: With sodium tetrahydroborate In methanol; chloroform for 0.5h; Green chemistry;
40%
2-(tricyclo[3.3.1.13,7]dec-1-yloxy)tetrahydro-2H-pyran
88773-89-1

2-(tricyclo[3.3.1.13,7]dec-1-yloxy)tetrahydro-2H-pyran

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
poly(4-vinylpyridinium) p-toluenesulfonate In tetrahydrofuran; ethanol at 75℃; for 50h; Hydrolysis;99%
With 2,3-dicyano-5,6-dichloro-p-benzoquinone In methanol; water for 1h; Ambient temperature;96%
With methanol at 20℃; for 0.666667h;92%
1-trimethylsiloxyadamantane
36960-53-9

1-trimethylsiloxyadamantane

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With methanol; 1,3-disulfonic acid imidazolium hydrogen sulfate at 20℃; for 0.1h; Green chemistry;99%
With poly (ethylene glycol)-sulfonated sodium montmorillonite nanocomposite In methanol at 20℃; for 0.333333h;96%
With silicaphosphite (silphos), [PCl3-n(SiO2)n] In acetonitrile at 20℃; for 0.0333333h;95%
1-Adamantyl bromide
768-90-1

1-Adamantyl bromide

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With tetra-(n-butyl)ammonium iodide In acetic anhydride; acetic acid; N,N-dimethyl-formamide at 0 - 10℃; for 4h; Substitution; Electrochemical reaction;98%
With water; bromine for 1h;95.5%
With hydrogenchloride In N,N-dimethyl-formamide at 105℃; for 0.5h;95%
adamantane
281-23-2

adamantane

A

2-Adamantanone
700-58-3

2-Adamantanone

B

1-adamanthanol
768-95-6

1-adamanthanol

C

1-adamantanol
700-57-2

1-adamantanol

Conditions
ConditionsYield
With [2,2]bipyridinyl; Ba; trifluoroacetic acid In dichloromethane at 20℃; for 0.0333333h; Product distribution;A n/a
B 97%
C n/a
With [2,2]bipyridinyl; Ba; trifluoroacetic acid In dichloromethane at 20℃; for 0.0333333h; Yields of byproduct given;A n/a
B 97%
C n/a
With ammonium cerium(IV) nitrate; oxygen In acetonitrile for 5h; Ambient temperature; Irradiation;A 5%
B 85%
C 5%
1-adamantyl methoxyacetate

1-adamantyl methoxyacetate

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With ytterbium(III) triflate In methanol at 50℃; for 36h;97%
1-iodoadamantane
768-93-4

1-iodoadamantane

A

adamantane
281-23-2

adamantane

B

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With 2,2'-azobis(isobutyronitrile); oxygen; tert-butyldibutyltin chloride; sodium cyanoborohydride In tert-butyl alcohol at 60℃; for 20h; Yields of byproduct given;A n/a
B 96%
With 2-(2-methoxyethoxy)ethyl alcohol; oxygen; sodium hydride In 1,4-dioxane at 20℃; for 24h; Schlenk technique; chemoselective reaction;A 42%
B n/a
1-(tert-butyldimethylsiloxy)tricyclo[3.3.1.1]decane
76358-85-5

1-(tert-butyldimethylsiloxy)tricyclo[3.3.1.1]decane

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With 2,5-bis(perfluorohexyl)-3,6-dichloro-1,4-benzoquinone In water; acetonitrile at 50℃; for 6h;96%
With N-iodo-succinimide In methanol at 20℃; for 24h;69%
sulfonic acid functionalized nanoporous silica In methanol at 35℃; for 24h;50 % Chromat.
pyridine-2-carboxylic acid adamantan-1-yl ester

pyridine-2-carboxylic acid adamantan-1-yl ester

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With zinc diacetate In methanol; dichloromethane at 38℃; for 30h;96%
adamantane
281-23-2

adamantane

trifluoroacetic acid
76-05-1

trifluoroacetic acid

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
Stage #1: adamantane; trifluoroacetic acid With oxygen; sodium nitrite at 20℃; for 3h;
Stage #2: With hydrogenchloride Further stages.;
96%
adamantan-1-yl 4-methylbenzoate
1036648-27-7

adamantan-1-yl 4-methylbenzoate

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With tetrabutylammonium tetrafluoroborate In 1-methyl-pyrrolidin-2-one; isopropyl alcohol at 90℃; Electrochemical reaction; chemoselective reaction;95%
With tetrabutylammonium tetrafluoroborate; isopropyl alcohol In 1-methyl-pyrrolidin-2-one at 90 - 100℃; Inert atmosphere; Electrolysis;95%
(3S,5S,7S)-1-((4-methoxybenzyl)oxy)adamantane
220235-72-3

(3S,5S,7S)-1-((4-methoxybenzyl)oxy)adamantane

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With ammonium peroxydisulfate; 9-(2-mesityl)-10-methylacridinium perchlorate In water; acetonitrile at 20 - 30℃; for 5h; Irradiation; Green chemistry;95%
1-(2-propenyloxy)tricyclo<3.3.1.13,7>decane
135394-83-1

1-(2-propenyloxy)tricyclo<3.3.1.13,7>decane

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With tert.-butyl lithium In pentane at -78 - 20℃; Substitution;94%
With 1,3-dimethylbarbituric acid; Pd(PPh3) In tetrahydrofuran at 90℃; for 24h;87%
With aminomethyl resin-supported N-propylbarbituric acid; tetrakis(triphenylphosphine) palladium(0) In tetrahydrofuran at 90℃; for 24h;86%
4-benzyloxy-butyric acid adamantan-1-yl ester

4-benzyloxy-butyric acid adamantan-1-yl ester

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
Stage #1: 4-benzyloxy-butyric acid adamantan-1-yl ester With hydrogen; palladium on activated charcoal In tetrahydrofuran under 760 Torr; for 24h;
Stage #2: With potassium tert-butylate In tetrahydrofuran for 0.166667h;
93%
1-adamantyl benzyl ether
23569-25-7

1-adamantyl benzyl ether

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With water; 4-acetylamino-2,2,6,6-tetramethylpiperidine-1-oxoammonium tetrafluoroborate In acetonitrile at 20℃; for 8h;93%
With triphenylphosphine hydrobromide In acetonitrile at 100℃; for 0.5h; Microwave irradiation; sealed tube;83%
Di(1-adamantyl)-tert-butylmethanol
80514-85-8

Di(1-adamantyl)-tert-butylmethanol

A

1-adamanthanol
768-95-6

1-adamanthanol

B

tert-butyl alcohol
75-65-0

tert-butyl alcohol

Conditions
ConditionsYield
With n-butyllithium In N,N,N,N,N,N-hexamethylphosphoric triamide; hexane at 20℃; Product distribution;A 8.6%
B 92.4%
adamantane
281-23-2

adamantane

3,3-dimethyldioxirane
74087-85-7

3,3-dimethyldioxirane

A

2-Adamantanone
700-58-3

2-Adamantanone

B

1-adamanthanol
768-95-6

1-adamanthanol

C

1-adamantanol
700-57-2

1-adamantanol

D

1,3-adamantandiol
5001-18-3

1,3-adamantandiol

E

1-acetyloxyadamantane
22635-62-7

1-acetyloxyadamantane

Conditions
ConditionsYield
In acetone at 20℃; for 7.6h; Rate constant; Product distribution; Kinetics;A 1.5%
B 91.5%
C 1%
D 4.5%
E 1.5%
1-(adamantane-1-carbonyloxy)pyridine-2(1H)-thione
91233-19-1

1-(adamantane-1-carbonyloxy)pyridine-2(1H)-thione

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With antimony triphenylsulphide In diethyl ether for 1h; Ambient temperature;91%
With oxygen; thiophenol; antimony tris-benzenethiolate In diethyl ether for 0.5h; Ambient temperature;91%
(3r,5r,7r)-adamantan-1-ylboronic acid
660427-99-6

(3r,5r,7r)-adamantan-1-ylboronic acid

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With rose bengal; triethylamine In ethanol at 25℃; for 12h; Schlenk technique; Irradiation;91%
2-((3r,5r,7r)-adamantan-1-yl)-4,4,5,5-tetramethyl-1,3,2-dioxaborolane
1357000-33-9

2-((3r,5r,7r)-adamantan-1-yl)-4,4,5,5-tetramethyl-1,3,2-dioxaborolane

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With rose bengal; triethylamine In ethanol at 25℃; for 12h; Schlenk technique; Irradiation;91%
C13H17Cl3O3

C13H17Cl3O3

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With trimethyltin(IV) hydroxide In 1,2-dichloro-ethane at 60℃; for 16h; Inert atmosphere; chemoselective reaction;91%
acetonitrile
75-05-8

acetonitrile

trans-N,N'-bis(1-adamantyl)diazene
24325-56-2

trans-N,N'-bis(1-adamantyl)diazene

A

1,1'-Biadamantane
3732-31-8

1,1'-Biadamantane

B

adamantane
281-23-2

adamantane

C

1-adamanthanol
768-95-6

1-adamanthanol

D

N-(1-adamantyl)acetamide
880-52-4

N-(1-adamantyl)acetamide

Conditions
ConditionsYield
With thianthrene cation radical perchlorate Ambient temperature; Further byproducts given;A 3%
B 0.3%
C 0.6%
D 90%
acetonitrile
75-05-8

acetonitrile

trans-N,N'-bis(1-adamantyl)diazene
24325-56-2

trans-N,N'-bis(1-adamantyl)diazene

A

1,1'-Biadamantane
3732-31-8

1,1'-Biadamantane

B

1-adamanthanol
768-95-6

1-adamanthanol

C

N-(1-adamantyl)acetamide
880-52-4

N-(1-adamantyl)acetamide

D

1-acetyladamantane
1660-04-4

1-acetyladamantane

Conditions
ConditionsYield
With thianthrenium perchlorate Ambient temperature; Further byproducts given;A 2.5%
B 0.6%
C 90%
D 5.5%
adamantane
281-23-2

adamantane

A

1-adamanthanol
768-95-6

1-adamanthanol

B

1-nitroadamantane
7575-82-8

1-nitroadamantane

C

1-nitroxyadamantane
32314-61-7

1-nitroxyadamantane

Conditions
ConditionsYield
With Nitrogen dioxide; ozone In dichloromethane at -78℃; for 0.5h;A n/a
B 90%
C n/a
With methanesulfonic acid; dinitrogen pentoxide In dichloromethane at 0℃; for 1h;
Di(1-adamantyl)(1-norbornyl)methanol
89849-39-8

Di(1-adamantyl)(1-norbornyl)methanol

A

1-adamanthanol
768-95-6

1-adamanthanol

B

1-norbornyl alcohol
51566-98-4

1-norbornyl alcohol

Conditions
ConditionsYield
With n-butyllithium In N,N,N,N,N,N-hexamethylphosphoric triamide; hexane at 20℃; Product distribution;A 89.7%
B 10.3%
1-adamantyl trifluoroacetate
58652-54-3

1-adamantyl trifluoroacetate

1-adamanthanol
768-95-6

1-adamanthanol

Conditions
ConditionsYield
With sodium hydroxide In water at 100℃; for 0.5h;89%
With potassium hydroxide In ethanol; water at 25℃; for 0.5h; Yield given;
With sodium carbonate for 2h; Heating; Yield given;
adamantane
281-23-2

adamantane

trifluoroacetic acid
76-05-1

trifluoroacetic acid

A

1-adamanthanol
768-95-6

1-adamanthanol

B

2-adamantyl trifluoroacetate
34909-02-9

2-adamantyl trifluoroacetate

Conditions
ConditionsYield
With peracetic acid; ruthenium trichloride In dichloromethane; ethyl acetate at 20℃; for 2h;A 89%
B 9%
trityl tetrafluoroborate
341-02-6

trityl tetrafluoroborate

1-<(methylthio)methoxy>tricyclo<3.3.1.13,7>decane
133859-39-9

1-<(methylthio)methoxy>tricyclo<3.3.1.13,7>decane

A

triphenylmethyl alcohol
76-84-6

triphenylmethyl alcohol

B

1-adamanthanol
768-95-6

1-adamanthanol

C

triphenmethyl methyl sulfide
62575-83-1

triphenmethyl methyl sulfide

Conditions
ConditionsYield
In dichloromethane for 0.25h; Ambient temperature;A 77%
B 88%
C 16%
In dichloromethane for 0.25h; Product distribution; Mechanism; Ambient temperature; quenching with aq. NaHCO3, other trityl salts;A 77%
B 88%
C 16%
1-adamanthanol
768-95-6

1-adamanthanol

1-chloroadamantane
935-56-8

1-chloroadamantane

Conditions
ConditionsYield
With oxalyl dichloride; N,N-dimethyl-formamide In dichloromethane at 20℃; for 18h;100%
With chlorosulfonic acid In chloroform at 10 - 15℃; for 8h;96%
With indium(III) chloride; dimethylmonochlorosilane; benzil In dichloromethane at 20℃; for 82h;93%
carbon disulfide
75-15-0

carbon disulfide

1-adamanthanol
768-95-6

1-adamanthanol

methyl iodide
74-88-4

methyl iodide

O-(adamantan-1-yl) S-methyl carbonodithioate
79057-62-8

O-(adamantan-1-yl) S-methyl carbonodithioate

Conditions
ConditionsYield
Stage #1: carbon disulfide; 1-adamanthanol With 1H-imidazole; sodium hydride In tetrahydrofuran at 20℃; for 0.5h;
Stage #2: methyl iodide In tetrahydrofuran at 20℃; for 0.5h;
100%
Stage #1: carbon disulfide; 1-adamanthanol With sodium hydride In tetrahydrofuran at 20℃; for 10h; Addition;
Stage #2: methyl iodide In tetrahydrofuran at 20℃; for 1h; Methylation;
78%
Stage #1: 1-adamanthanol With sodium hydride In tetrahydrofuran; mineral oil at 0℃; for 2h;
Stage #2: carbon disulfide In tetrahydrofuran; mineral oil at 0 - 20℃; for 15h;
Stage #3: methyl iodide In tetrahydrofuran; mineral oil at 0℃; for 2h;
72%
4-bromo-phenol
106-41-2

4-bromo-phenol

1-adamanthanol
768-95-6

1-adamanthanol

2-(1-adamantyl)-4-bromophenol
104224-68-2

2-(1-adamantyl)-4-bromophenol

Conditions
ConditionsYield
With sulfuric acid; acetic acid at 20℃; for 48h; Friedel Crafts alkylation;100%
With sulfuric acid; acetic acid In dichloromethane at 20℃; for 24h;100%
With sulfuric acid; acetic acid In dichloromethane at 20℃; for 48h; Friedel-Crafts Alkylation; Large scale;99%
1-adamanthanol
768-95-6

1-adamanthanol

acetic anhydride
108-24-7

acetic anhydride

1-acetyloxyadamantane
22635-62-7

1-acetyloxyadamantane

Conditions
ConditionsYield
With magnesium(II) perchlorate at 20℃; for 0.33h;100%
With tin(IV) tetraphenylporphyrin perchlorate at 20℃; for 0.25h;99%
With silica gel for 0.0583333h; Microwave irradiation; neat (no solvent);99%
1-adamanthanol
768-95-6

1-adamanthanol

4-bromo-4'-hydroxybiphenyl
29558-77-8

4-bromo-4'-hydroxybiphenyl

4-(4'-bromophenyl)-2-(adamantan-1-yl)phenol
496868-80-5

4-(4'-bromophenyl)-2-(adamantan-1-yl)phenol

Conditions
ConditionsYield
With sulfuric acid; acetic acid at 25℃; for 72h; Friedel-Crafts reaction;100%
With sulfuric acid; acetic acid at 20℃; for 96h;100%
With sulfuric acid; acetic acid at 20℃; for 96h;100%
With sulfuric acid In acetone at 20℃; for 96h; Cooling with ice;100%
Friedel-Crafts alkylation;
1-adamanthanol
768-95-6

1-adamanthanol

2,4-dihydro-[1,2,4]triazole-3-thione
3179-31-5

2,4-dihydro-[1,2,4]triazole-3-thione

1-(1-adamantyl)-3-[(1-adamantyl)sulfanyl]-1,2,4-triazole

1-(1-adamantyl)-3-[(1-adamantyl)sulfanyl]-1,2,4-triazole

Conditions
ConditionsYield
With sulfuric acid at 20℃; for 4h;100%
With phosphoric acid; acetic acid at 40 - 42℃; for 5h;100%
tetraphenylbismuth(V) fluoride

tetraphenylbismuth(V) fluoride

1-adamanthanol
768-95-6

1-adamanthanol

(3s,5s,7s)-1-phenoxyadamantane
38614-05-0

(3s,5s,7s)-1-phenoxyadamantane

Conditions
ConditionsYield
With N-Methyldicyclohexylamine; copper diacetate In toluene at 20℃; for 1h;100%
1-adamanthanol
768-95-6

1-adamanthanol

phenol
108-95-2

phenol

4-adamantylphenol
29799-07-3

4-adamantylphenol

Conditions
ConditionsYield
With trifluoroacetic acid at 20℃; for 6h; Inert atmosphere;100%
With trifluoroacetic acid at 20℃; for 12h;85%
With trifluoroacetic acid79%
With sulfuric acid In dichloromethane at 20℃; Inert atmosphere;23%
With sulfuric acid In dichloromethane at 20℃; Inert atmosphere;
1-adamanthanol
768-95-6

1-adamanthanol

cobalt(II) bis(trimethylsilyl)amide
18544-54-2, 122676-68-0, 14760-23-7

cobalt(II) bis(trimethylsilyl)amide

bis(1-adamantoxo)cobalt(II)

bis(1-adamantoxo)cobalt(II)

Conditions
ConditionsYield
In benzene under Ar, refluxed briefly; filtered, washed with ether, elem. anal.;100%
1-adamanthanol
768-95-6

1-adamanthanol

toluene
108-88-3

toluene

4-(1-adamantyl)toluene
1459-55-8

4-(1-adamantyl)toluene

Conditions
ConditionsYield
With indium(III) triflate; acetylacetone for 2h; Reflux; Green chemistry;100%
With trifluoroacetic acid at 20℃; for 12h;86%
1-adamanthanol
768-95-6

1-adamanthanol

carbonic acid dimethyl ester
616-38-6

carbonic acid dimethyl ester

1-methoxyadamantane
6221-74-5

1-methoxyadamantane

Conditions
ConditionsYield
With tungsten hexacarbonyl at 180℃; for 1h; chemoselective reaction;100%
1-adamanthanol
768-95-6

1-adamanthanol

2,3,4-tri-O-benzyl-L-rhamnopyranosyl ortho-hex-1-ynylbenzoate
1391992-92-9

2,3,4-tri-O-benzyl-L-rhamnopyranosyl ortho-hex-1-ynylbenzoate

C37H38O8

C37H38O8

Conditions
ConditionsYield
Stage #1: 1-adamanthanol; 2,3,4-tri-O-benzyl-L-rhamnopyranosyl ortho-hex-1-ynylbenzoate In dichloromethane at 20℃; for 0.5h; Inert atmosphere; Molecular sieve;
Stage #2: With N-iodo-succinimide; trimethylsilyl trifluoromethanesulfonate In dichloromethane at 0 - 20℃; for 2h; Inert atmosphere; Molecular sieve;
100%
2,3-di-O-benzyl-4,6-O-benzylidene-α-D-mannopyranosyl trichloroacetimidate

2,3-di-O-benzyl-4,6-O-benzylidene-α-D-mannopyranosyl trichloroacetimidate

1-adamanthanol
768-95-6

1-adamanthanol

1-(adamantan-1-yl)-2,3-di-O-benzyl-4,6-benzylidene-β-D-mannopyranose

1-(adamantan-1-yl)-2,3-di-O-benzyl-4,6-benzylidene-β-D-mannopyranose

Conditions
ConditionsYield
With trimethylsilyl trifluoromethanesulfonate In dichloromethane at -78℃; Molecular sieve; Inert atmosphere; stereoselective reaction;100%
1-adamanthanol
768-95-6

1-adamanthanol

A

adamantane
281-23-2

adamantane

B

2-(1-adamantyl)propane
773-32-0

2-(1-adamantyl)propane

Conditions
ConditionsYield
With triisopropylborane; trifluorormethanesulfonic acid In 1,1,2-Trichloro-1,2,2-trifluoroethane 1.) -30 deg C, 30 min 2.) room temp., 6 h;A 99.9%
B 0.1%
1-adamanthanol
768-95-6

1-adamanthanol

chloroacetonitrile
107-14-2

chloroacetonitrile

N-(1-adamantyl)-2-chloroacetamide
5689-59-8

N-(1-adamantyl)-2-chloroacetamide

Conditions
ConditionsYield
Stage #1: 1-adamanthanol; chloroacetonitrile With sulfuric acid In acetic acid; N,N-dimethyl-formamide at 20 - 80℃;
Stage #2: With water In acetic acid; N,N-dimethyl-formamide at 70℃;
99.6%
Stage #1: 1-adamanthanol; chloroacetonitrile With acetic acid In N,N-dimethyl-formamide
Stage #2: With sulfuric acid; water In N,N-dimethyl-formamide at 20 - 80℃; Product distribution / selectivity;
99.6%
With sulfuric acid; acetic acid at 20℃; for 5h; Ritter reaction;95%
With indium(III) triflate In sulfur dioxide at -50 - 100℃; for 24h; Ritter Amidation; Inert atmosphere; Autoclave; liquid SO2;79%
1-adamanthanol
768-95-6

1-adamanthanol

acetonitrile
75-05-8

acetonitrile

N-(1-adamantyl)acetamide
880-52-4

N-(1-adamantyl)acetamide

Conditions
ConditionsYield
With copper(ll) bromide at 150℃; for 8h; Reagent/catalyst; Ritter Amidation; Inert atmosphere; Sealed tube;99%
With trifluoromethylsulfonic anhydride; sodium hydrogencarbonate In dichloromethane for 2h; Ambient temperature;98%
With water; tert-butylammonium hexafluorophosphate(V); calcium(II) trifluoromethanesulfonate In neat (no solvent) at 140℃; for 0.416667h; Ritter Amidation; Microwave irradiation; Green chemistry;95%
1-adamanthanol
768-95-6

1-adamanthanol

1-Adamantyl bromide
768-90-1

1-Adamantyl bromide

Conditions
ConditionsYield
With oxygen; 1,2-dibromomethane for 10h; Reflux;99%
With iron(III)-acetylacetonate; carbon tetrabromide at 120℃; for 2h; Sealed tube; Inert atmosphere;99%
With dibromo sulfoxide In toluene for 22h;96%
1-adamanthanol
768-95-6

1-adamanthanol

adamantane
281-23-2

adamantane

Conditions
ConditionsYield
With hydrogen; aluminum oxide; nickel at 180℃;99%
With indium(III) chloride; diphenylsilyl chloride In 1,2-dichloro-ethane at 80℃; for 3h;99%
With boron trifluoride diethyl etherate In water for 2h; Inert atmosphere; Reflux;29%
1-adamanthanol
768-95-6

1-adamanthanol

toluene-4-sulfonamide
70-55-3

toluene-4-sulfonamide

1-tosylaminoadamantane
56432-99-6

1-tosylaminoadamantane

Conditions
ConditionsYield
With iron(III) chloride In 1,2-dichloro-ethane at 50℃; for 24h; Inert atmosphere; Sealed tube;99%
With oxalic acid; 2,3,4,5-tetrafluorophenyl(dihydroxy)borane In nitromethane at 20℃;87%
With sulfuric acid for 2h;66%
1-adamanthanol
768-95-6

1-adamanthanol

1,1,1,3,3,3-hexamethyl-disilazane
999-97-3

1,1,1,3,3,3-hexamethyl-disilazane

1-trimethylsiloxyadamantane
36960-53-9

1-trimethylsiloxyadamantane

Conditions
ConditionsYield
iodine In dichloromethane at 20℃; for 0.1h; Substitution;99%
With silica-supported ZnCl2 (30%) In acetonitrile at 20℃; for 0.35h;98%
With aluminum tris(dihydrogen phosphate) at 20℃; for 0.933333h;97%
1-adamanthanol
768-95-6

1-adamanthanol

methyl iodide
74-88-4

methyl iodide

1-methoxyadamantane
6221-74-5

1-methoxyadamantane

Conditions
ConditionsYield
With sodium hydride In tetrahydrofuran99%
With sodium hydride In tetrahydrofuran; mineral oil at 0 - 20℃; for 20h;81%
With sodium hydride In tetrahydrofuran
Stage #1: 1-adamanthanol With sodium hydride In tetrahydrofuran at 0℃; for 1h; Inert atmosphere;
Stage #2: methyl iodide In tetrahydrofuran at 0 - 20℃; Inert atmosphere;
trimethylsilyl cyanide
7677-24-9

trimethylsilyl cyanide

1-adamanthanol
768-95-6

1-adamanthanol

1-trimethylsiloxyadamantane
36960-53-9

1-trimethylsiloxyadamantane

Conditions
ConditionsYield
With zinc(II) fluoride In dichloromethane for 18h;99%
1-adamanthanol
768-95-6

1-adamanthanol

benzonitrile
100-47-0

benzonitrile

N-(adamantan-1-yl)benzamide
19026-84-7

N-(adamantan-1-yl)benzamide

Conditions
ConditionsYield
With copper(ll) bromide at 150℃; for 6h; Ritter Amidation; Inert atmosphere; Sealed tube;99%
With bismuth(lll) trifluoromethanesulfonate; water Ritter reaction;91%
With water; tert-butylammonium hexafluorophosphate(V); calcium(II) trifluoromethanesulfonate In neat (no solvent) at 140℃; for 0.416667h; Ritter Amidation; Microwave irradiation; Green chemistry;90%
1-adamanthanol
768-95-6

1-adamanthanol

2,3,4-tri-O-acetyl-L-rhamnopyranosyl (N-phenyl)-2,2,2-trifluoroacetimidate
339276-10-7

2,3,4-tri-O-acetyl-L-rhamnopyranosyl (N-phenyl)-2,2,2-trifluoroacetimidate

Acetic acid (2R,3R,4R,5S,6S)-4,5-diacetoxy-2-(adamantan-1-yloxy)-6-methyl-tetrahydro-pyran-3-yl ester

Acetic acid (2R,3R,4R,5S,6S)-4,5-diacetoxy-2-(adamantan-1-yloxy)-6-methyl-tetrahydro-pyran-3-yl ester

Conditions
ConditionsYield
With trimethylsilyl trifluoromethanesulfonate In dichloromethane at 25℃; for 3h;99%
1-adamanthanol
768-95-6

1-adamanthanol

2,3,4,6-tetra-O-benzoyl-D-glucopyranosyl 1-(N-phenyl)-2,2,2-trifluoroacetimidate
339276-12-9

2,3,4,6-tetra-O-benzoyl-D-glucopyranosyl 1-(N-phenyl)-2,2,2-trifluoroacetimidate

1-adamantanyl 2,3,4,6-tetra-O-benzoyl-β-D-glucopyranoside

1-adamantanyl 2,3,4,6-tetra-O-benzoyl-β-D-glucopyranoside

Conditions
ConditionsYield
With trimethylsilyl trifluoromethanesulfonate In dichloromethane at 25℃; for 3h;99%
1-adamanthanol
768-95-6

1-adamanthanol

25,27-bis(benzyloxy)-26,28-dihydroxycalix[4]arene
125065-63-6, 134309-08-3

25,27-bis(benzyloxy)-26,28-dihydroxycalix[4]arene

5,11,17,23-tetrakis(1-adamantyl)-calix[4]arene

5,11,17,23-tetrakis(1-adamantyl)-calix[4]arene

Conditions
ConditionsYield
With trifluoroacetic acid In chloroform at 60 - 65℃; for 9h;99%

768-95-6Relevant articles and documents

Thermochemistry of Bridged-ring Substances. Enthalpies of Formation of Diamantan-1-, -3-, and -4-ol and of Diamantanone

Clark, Timothy,Knox, Trevor McO.,McKervey, M. Anthony,Mackle, Henry

, p. 1686 - 1689 (1980)

The enthalpies of combustion and of sublimation four mono-oxygenated diamantanes have been determined.The derived solid and gas-phase enthalpies of formation in kcal mol-1 at 298.15 K follow: diamantanone, -81.16+/-0.38, -56.53+/-0.41; diamantan-1-ol, -102.49+/-0.24, -74.30+/-0.28; diamantan-3-ol, -98.89+/-0.35, -71.14+/-1.10; diamantan-4-ol, -103.96+/-0.39, -75.80+/-0.39.Oxo and hydroxy group increments within the diamantane, adamantane, and cyclohexane series are discussed.Enthalpy differences betveen the isomeric diamantanols are compared with existing data from equilibration studies in solution.Comparisons are made between the experimental gas-phase enthalpies of formation and those obtained by molecular mechanics (empirical force field) calculations based on the Allinger MM1 force field model.

Regioselective intramolecular oxidation of unactivated C-H bonds by dioxiranes generated in situ

Yang,Wong,Wang,Tang

, p. 6611 - 6612 (1998)

-

Site-isolated porphyrin catalysts in imprinted polymers

Burri, Estelle,Oehm, Margarita,Daguenet, Corinne,Severin, Kay

, p. 5055 - 5061 (2005)

A meso-tetraaryl ruthenium porphyrin complex having four polymerizable vinylbenzoxy groups (2) has been synthesized by reaction of pyrrole with 4-(vinylbenzoxy)benzaldehyde and subsequent metalation with [Ru 3(CO)12]. The porphyrin complex was immobilized by copolymerization with ethylene glycol dimethacrylate. The resulting polymer P2 was found to catalyze the oxidation of alcohols and alkanes with 2,6-dichloropyridine N-oxide without activation by mineral acids. Under similar conditions, the homogeneous catalyst 2 was completely inefficient. By using diphenylaminomethane and 1-aminoadamantane as coordinatively bound templates during the polymerization procedure, the molecularly imprinted polymers P3 and P4 have been synthesized. Compared with the polymer P2, the imprinted catalysts displayed a significantly increased activity with rate enhancements of up to a factor of 16.

Schleyer,Nicholas

, p. 2700,2706 (1961)

Schleyer et al.

, p. 4195 (1964)

Foiled conjugation in α-oximino carbocations

Creary, Xavier,Jiang, Ziqi

, p. 3482 - 3489 (1996)

The 4-CHNOCH3 group is a cation-stabilizing group when placed in the para-position of a cumyl cation. The effect of this group on cumyl cations when flanked by adjacent methyl groups has now been determined. Solvolysis rates of 3,5-(CH3)2-4-(CHNOCH3)cumyl trifluoroacetates are somewhat slower than that of 3,5-dimethylcumyl trifluoroacetate. This is attributed to steric inhibition of the cation-stabilizing resonance effect of the p-oximino group. In a 1-adamantyl system, where an α-oximino group has been placed directly adjacent to a developing cationic center, solvolysis rates relative to 1-adamantyl mesylate are slowed by a factor of 108. This is attributed a cation-destabilizing inductive effect where geometric constraints prevent stabilizing orbital overlap of the cationic center with the adjacent α-oximino group. This cation-destabilizing effect fades in the homoadamantyl and the bicyclo[3.3.1]nonyl systems, where rate-retarding effects are 1.6 × 104 and 1.5 × 102, respectively. The behavior of geometrically constrained α-oximino cations parallels that of analogously constrained allylic cations. Computational studies at the HF/6-31G* level indicate that twisting the α-oximino group out of planarity with a tertiary cationic center into a perpendicular arrangement decreases stabilization by 21 kcal/mol. These studies suggest that conjugative interactions, and not ground state destabilization, are the most important factors in controlling rates of formation of α-oximino cations from mesylates and trifluoroacetates.

Oxidation of organic compounds by ozone on a surface: 1. Ozonization of adamantane on silica gel

Avzyanova,Kabal'nova,Shereshovets

, p. 360 - 362 (1996)

Adamantanol was obtained by the ozonization of adamantane, at -78°C, adsorbed on silica gel. Ozone does not decompose on silica gel in the absence of a substrate. Ozonization of adamantane on silica gel is accompanied by chemiluminescence in the IR region. The chemiluminescence quenching is of first-order with the effective rate constant k′. In the range from 0.4 to 5 mmol, k′ depends linearly on the amount of adamantane adsorbed on the silica gel. The activation energy Ea = 9.97±1.89 kcal mol-1 and the pre-exponential factor A = (2.76±0.52)·106 were calculated from the temperature dependence of k′.

Dissociative electron transfer to dihaloalkanes. electrochemical reduction of 1,3-dihaloadamantanes, 1,4-dihalobicyclo[2.2.2]octanes, and 1,3-dihalobicyclo[1.1.1]pentanes

Adcock, William,Clark, Christopher I.,Houmam, Abdelaziz,Krstic, Alexander R.,Pinson, Jean,Savéant, Jean-Michel,Taylor, Dennis K.,Taylor, Julian F.

, p. 4653 - 4659 (1994)

The electrochemical reductive cleavage of the title compounds was investigated by means of cyclic voltammetry and electrolysis. The reaction is a two-electron process that yields competitively ring closure (or fragmentation) products and the monohalide resulting from the expulsion of the best leaving halide ion. Product selection occurs at the level of the carbanion resulting from the reduction of the one-electron reductive cleavage radical. In the formation of the latter, electron transfer and bond breaking are concerted; thus, the anion radical is not involved as an intermediate. The variations in the reduction potential observed in the three series of compounds can be rationalized, by application of the dissociative electron-transfer theory, as related variations of the bond dissociation energy of the first carbon-halogen bond to be cleaved. In the adamantane and bicyclopentane series, these are mainly the result of through-space-bonded interactions in the one-electron reductive cleavage radical and, to a lesser extent, in the starting dihalide itself, while through-bond interactions appear to prevail in the bicyclooctane series.

Hydrogen-atom and oxygen-atom transfer reactivities of iron(

Banerjee, Sridhar,Haukka, Matti,Hossain, Md. Kamal,Huelsmann, Ricardo Dagnoni,Martendal, Edmar,Munshi, Sandip,Nordlander, Ebbe,Paine, Tapan K.,Peralta, Rosely,Singh, Reena,Sinha, Arup,Valiati, Andrei Felipe,Wendt, Ola F.,Xavier, Fernando,Yiga, Solomon

supporting information, p. 870 - 884 (2022/02/01)

A series of iron(ii) complexes with the general formula [FeII(L2-Qn)(L)]n+ (n = 1, L = F?, Cl?; n = 2, L = NCMe, H2O) have been isolated and characterized. The X-ray crystallographic data reveals that

RUTHENIUM COMPLEX AND PRODUCTION METHOD THEREOF, CATALYST, AND PRODUCTION METHOD OF OXYGEN-CONTAINING COMPOUND

-

Paragraph 0086-0097, (2021/01/29)

PROBLEM TO BE SOLVED: To provide a ruthenium complex that is particularly useful as a catalyst for oxidizing a substrate having a carbon-hydrogen bond. SOLUTION: The ruthenium complex represented by the general formula (i) or a cis conformer thereof is provided. In the general formula (i), R1 represents H, a phenyl group or a substituted phenyl group; R2 represents H, a phenyl group or an alkyl group; L1 represents halogen or water molecule; L2 represents triphenylphosphine, pyridine, imidazole or dimethylsulfoxide; X represents halogen; and n represents 1 or 2. SELECTED DRAWING: None COPYRIGHT: (C)2021,JPO&INPIT

Cationic nickel(II) pyridinophane complexes: Synthesis, structures and catalytic activities for C-H oxidation

Nishimura, Tsubasa,Ando, Yuki,Shinokubo, Hiroshi,Miyake, Yoshihiro

supporting information, p. 1049 - 1052 (2021/05/19)

A series of nickel(II) pyridinophane complexes were synthesized and characterized by X-ray crystallographic analysis. Their IR spectra supported the existence of mononuclear nickel(II) complexes in solution. Furthermore, we conducted catalytic CH oxidation of cyclooctane with nickel(II) pyridinophanes as the catalysts. The activity of nickel(II) pyridinophanes was affected by steric hindrance around the nitrogen atoms.

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