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24442-69-1

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24442-69-1 Usage

Physical state

Colorless, flammable liquid

Odor

Strong and unpleasant

Applications

a. Organic synthesis
b. Building block for polymers and pharmaceuticals
c. Precursor in the synthesis of other compounds

Potential uses

a. Medicine
b. Material science
c. Chemical industries

Safety precautions

Handle with care due to flammable nature and toxic properties

Check Digit Verification of cas no

The CAS Registry Mumber 24442-69-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,4,4,4 and 2 respectively; the second part has 2 digits, 6 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 24442-69:
(7*2)+(6*4)+(5*4)+(4*4)+(3*2)+(2*6)+(1*9)=101
101 % 10 = 1
So 24442-69-1 is a valid CAS Registry Number.
InChI:InChI=1/C5H4/c1-3-5-4-2/h1-2H,5H2

24442-69-1SDS

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 penta-1,4-diyne

1.2 Other means of identification

Product number -
Other names Diethinylmethan

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:24442-69-1 SDS

24442-69-1Relevant articles and documents

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Jutzi,P.,Baumgaertner,J.

, p. 257 - 266 (1978)

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Synthesis of stanna- and germa-cycloheptatrienes

Nakadaira, Yasuhiro,Sato, Ryuji,Sakurai, Hideki

, p. 411 - 417 (1992)

The first preparations of C-unsubstituted stannacycloheptatriene and germacycloheptatriene, analogues of cycloheptatriene, are described with their spectroscopic properties.A stannacyclohexadienyl anion derived from stannacyclohexadiene by treatment with lithium di-isopropylamide was allowed to react with chlorocarbene generated from dichloromethane and n-butyllithium, and this led to the formation of the corresponding stannacycloheptatriene.The disproportionation reaction between the stannacyclohexadiene and dichlorodimethylgermane gave the corresponding germacyclohexadiene in reasonable yield.In a similar manner, the reaction of the germacyclohexadienyl anion with chlorocarbene yielded C-unsubstituted germacycloheptatriene.

2-pyridylnitrene and 3-pyridazylcarbene and their relationship via ring-expansion, ring-opening, ring-contraction, and fragmentation

Kvaskoff, David,Bednarek, Pawel,Wentrup, Curt

scheme or table, p. 1600 - 1611 (2010/05/01)

(Figure Presented) Photolysis of triazolo[1,5-b]pyridazine 8 isolated in Ar matrix generates diazomethylpyridazines 9Z and 9E and diazopentenynes 11Z and 11E as detected by IR spectroscopy. ESR spectroscopy detected the 3-pydidazylcarbene 10 as well as pent-2-en-3-yn-l-ylidene 12 formed by loss of one and two molecules of N2, respectively. Further photolysis caused rearrangement of the carbenes to 1,2-pentadien-4-yne 13 and 3- ethynylcyclopropene 14. Flash vacuum thermolysis (FVT) of 8 at 400-500 °C with Ar matrix isolation of the products yielded 13, 14, and 1,4-pentadiyne 15. At higher temperatures, glutacononitriles 27Z and 27E were formed as well together with minor amounts of 2- and 3-cyanopyrroles 28 and 29. Tetrazolo[1,5-a]pyridine/2-azidopyridine 22T/22A yields 2-pyridylnitrene 19 as well as the novel open-chain cyanodienylnitrene 23 and the ring-expanded 1,3-diazacyclohepta-l,2,4,6-tetraene 21 on short wavelength photolysis. Nitrenes 19 and 23 were detected by ESR spectroscopy, and cumulene 21 by IR and UV spectroscopy. FVT of 22T/22A also affords 2-pyridylnitrene 19 and diazacycloheptatetraene 21, as well as glutacononitriles 27Z,E and 2- and 3-cyanopyrroles 28 and 29. Photolysis of 21 above 300 nm yields the novel spiroazirene 25, identified by its matrix 1R spectrum. The reaction pathways connecting the four carbenes (10Z,E and 12Z,E) and three nitrenes (19, 23EZ, and 23ZZ) in their open-shell singlet and triplet states are elucidated with the aid of theoretical calculations at DFT, CASSCF, and CASPT2 levels. Three possible mechanisms of ring-contraction in arylnitrenes are identified: (i) via ring-opening to dienylnitrenes, (ii) concerted ring-contraction, and (iii) via spiroazirenes 25, whereby (i) is the energetically most favorable.

Reactions of Monosubstituted Acetylenic Alcohols with Allyl Halides

Veliev, M. G.,Shatirova, M. I.,Chalabiev, Ch. A.,Mamedov, I. M.,Mustafaev, A. M.

, p. 52 - 56 (2007/10/03)

Reactions of 2-propynyl alcohol and 2-methyl-3-butyn-2-ol with mono- and dihalogenated propenes yield allylacetylenic alcohols.The kinetic study showed that the reaction rate is governed by both electronic and steric effects of substituents in the allyl halides.

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