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(Z)-4-Undecenoic acid ethyl ester is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

39944-81-5

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39944-81-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 39944-81-5 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 3,9,9,4 and 4 respectively; the second part has 2 digits, 8 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 39944-81:
(7*3)+(6*9)+(5*9)+(4*4)+(3*4)+(2*8)+(1*1)=165
165 % 10 = 5
So 39944-81-5 is a valid CAS Registry Number.

39944-81-5Downstream Products

39944-81-5Relevant academic research and scientific papers

Fe-catalyzed synthesis of (4Z)-alkenoates

Shakhmaev,Sunagatullina, A. Sh.,Zorin

, p. 569 - 571 (2017)

A new approach to stereoselective synthesis of (4Z)-alkenoates has been developed based on Fecatalyzed cross-coupling of ethyl (4Z)-5-chloropent-4-enoate with the Grignard reagents.

Fe-catalyzed synthesis of (13z)-eicos-13-en-10-one, the main sex pheromone component of carposina niponensis

Shakhmaev,Sunagatullina, A. Sh,Zorin

, p. 128 - 131 (2017)

(13Z)-Eicos-13-en-10-one, the main sex pheromone component of Carposina niponensis, was synthesized stereoselectively via Fe-catalyzed cross-coupling of ethyl (4Z)-5-chloropent-4-enoate with hexylmagnesiumbromide to give ethyl (4Z)-undec-4-enoate and repeated Fe-catalyzed cross-coupling of its acid chloride with nonylmagnesiumbromide.

Chemistry and photochemistry attending the inactivation of Escherichia coli β-hydroxydecanoyl thiol ester dehydrase by an acetylenic diazoketone

Henderson,Larsen,Schwab

, p. 5025 - 5034 (1994)

β-Hydroxydecanoyl thiol ester dehydrase from Escherichia coli, an enzyme that catalyzes both dehydration and allylic rearrangement reactions, has been shown previously to undergo mechanism-based inactivation by the acetylenic substrate analog 1-diazo-4-undecyn-2-one (DUO). Details of the chemistry and photochemistry of DUO are now presented. Analysis of DUO-inactivated dehydrase by 15N NMR spectrosocpy indicates that DUO quantitatively alkylates histidine-70. Long-wavelength photoirradiation leads to spectrophotometrically observable changes in the DUO-dehydrase adduct. The structural changes were characterized by a combination of methods. Samples of protein that had been inactivated with [1-13C]-, [2-13C]-, and [3-13C] DUO were analyzed by 13C NMR spectroscopy, both prior and subsequent to photoirradiation. By comparisons of the chemical shifts of the enriched atoms of the inactivator moiety with those of model compounds, it was confirmed that the α-diazoketone moiety is retained in DUO-inactivated dehydrase and that photoirradiation leads to Wolff rearrangement of the α-diazoketone moiety followed by attack of a nucleophile on the resulting ketone. Proteolytic degradation of photoirradiated, DUO-inactivated dehydrase gave peptides that were analyzed by Edman sequencing and by mass spectrometry. The results are consistent with a single protein modification (at H70), and attack on the ketone by water, leading to a carboxylic acid. Samples of intact native, DUO-inactivated, and photoirradiated, DUO-inactivated dehydrase were analyzed by electrospray ionization mass spectrometry, the results of which clearly support the hypothesis that the ketone suffers attack by water. In light of recent results from X-ray crystallography, it is proposed that the water that attacks the ketone is one of two bound water molecules with specific roles in the binding and/or catalytic turnover of substrate. A Michael addition-elimination mechanism is presented to explain the unexpected hydrolytic lability of the DUO-dehydrase adduct.

Synthesis of (Z)-7-Nonadecen-11-one and (Z)-7-Eicosen-11-one, Sex Pheromone Components of Peach Fruit Moth, Carposina noponensis Walsingham

Vig, O. P.,Sharma, M. L.,Taneja, K. C.,Malik, Neera

, p. 863 - 865 (2007/10/02)

Catalytic hydrogenation of 2-nonyn-1-ol (III) in the presence of Lindlar's catalyst provides (Z)-2-nonen-1-ol (IV) which on bromination followed by alkylation with ethyl monosodiomalonate furnishes the diester (VI).Decarbethoxylation of VI with NaCl/DMSO to monoester (VII), followed by LAH reduction, yields the carbinol (VIII) which on treatment with Corey's reagent gives the aldehyde (IX) in good yield.Aldehyde (IX) on Grignard reaction with 1-bromooctane and 1-bromononane separately provides the alcohols (X) and (XI), respectively.The alcohols (X) and (XI) on oxidation with Corey's reagent yield the title ketones, (Z)-7-nonadecen-11-one (I) and (Z)-eicosen-11-one (II), respectively.

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