Efficient and rapid preparations of carbamoyl chlorides and unsymmetrical ureas from tertiary amines and phosgene or its safe equivalent triphosgene [bis(trichloromethyl)carbonate, BTC] are described. First, the reaction of stoichiometric amounts of phosgene with secondary amines was revisited, and it was shown that the formation of carbamoyl chlorides in high yields required careful adjustments of experimental conditions and the use of pyridine as an HCl scavenger. A phosgene-mediated dealkylation of triethylamine was observed when this base was used instead of pyridine. Taking advantage of this observation, a strategy of synthesis of carbamoyl chlorides from tertiary amines and phosgene has been developed. N-Alkyl-N-benzyl(substituted)tetrahydroisoquinolines, -piperazines, -piperidines, or -anilines were treated with stoichiometric amounts of phosgene (or BTC) in CH(2)Cl(2). Tertiary amines bearing electron-enriched benzyl group(s) afforded carbamoyl chlorides in excellent yields and without any contamination by symmetrical ureas. Subsequent additions of primary or secondary amines to these carbamoyl chlorides produced unsymmetrical ureas in single-pot and high-yielding operations. This methodology was applied in (11)C-chemistry. From [(11)C]phosgene, a common precursor used in the preparation of radiotracers for positron emission tomography, a rapid and efficient synthesis of (11)C-carbamoyl chlorides and (11)C-unsymmetrical ureas derived from tetrahydroisoquinoline and piperazine is described. The first example of (11)C-amide formation from the reaction of a (11)C-carbamoyl chloride and an organometallic (cyanocuprate or a Grignard reagent in the presence of a nickel catalyst) is also presented.
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http://dx.doi.org/10.1021/jo0346297 | DOI Listing |
J Org Chem
January 2025
School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou, Jiangsu 225002, China.
A novel and highly efficient Pd-catalyzed approach for the synthesis of bis-heterocycles featuring both isoxazoline and methyleneindole motifs is demonstrated. The in situ formation of vinyl Pd(II) species through an alkyne-tethered carbamoyl chloride cyclization is crucial, and the innovative Pd-catalyzed carboetherification of β,γ-unsaturated oximes with vinyl Pd(II) species has been developed. This method is not only operationally straightforward but also exhibits a broad substrate scope and excellent functional group tolerance.
View Article and Find Full Text PDFCureus
October 2024
Orthopaedics, KIMS-Sunshine Hospitals, Hyderabad, IND.
Background Surgical site infections (SSIs) represent a significant burden in healthcare, commonly occurring after surgical procedures and leading to prolonged recovery times and increased healthcare costs. Traditional antimicrobial dressings pose risks such as antimicrobial resistance. This study aimed to evaluate the safety and clinical efficacy of dialkyl carbamoyl chloride (DACC)-impregnated dressings, which use a purely physical mechanism to prevent bacterial contamination, in patients undergoing orthopaedic or gastrointestinal surgeries.
View Article and Find Full Text PDFJ Org Chem
September 2024
Hubei Key Laboratory of Nanomedicine for Neurodegenerative Diseases, School of Chemistry, Chemical Engineering and Life Science, Wuhan University of Technology, Wuhan 430070, China.
A palladium-catalyzed domino cyclization/cycloisomerization reaction of alkyne-tethered carbamoyl chlorides with ()-β-chloroenones is reported. This reaction proceeds via a -carbopalladation of the alkyne, followed by a vinyl-Pd-catalyzed cycloisomerization of the ()-β-chloroenone cascade, which provides an efficient method to synthesize furan-linked methylene oxindoles. The reaction features stereodefined vinyl-Pd species, high to excellent 5-exo/6-endo selectivity, excellent / selectivity, and the sequential formation of three bonds and bis-heterocycles.
View Article and Find Full Text PDFChemistry
October 2024
Pharmacognosy Department, Faculty of Pharmacy, Kafrelsheikh University, 33516, Kafrelsheikh, Egypt.
Organic halogen compounds are cornerstones of applied chemical sciences. Halogen substitution is a smart molecular design strategy adopted to influence reactivity, membrane permeability and receptor interaction. Chiral bioreceptors may restrict the stereochemical requirements in the halo-ligand design.
View Article and Find Full Text PDFOrg Lett
March 2024
College of Chemistry and Molecular Sciences, Wuhan University, 299 Bayi Road, Wuhan 430072, P. R. China.
We report a deoxygenative amidation reaction of alcohols with carbamoyl chlorides to afford amides through nickel-photoredox dual catalysis. Good to excellent yields can be obtained even for diverse complex sugar and steroid derivatives. The reaction is scalable, and the synthetic utility of the reaction was demonstrated by the homologation of alcohols to deliver several important γ-amino alcohols and a synthetically challenging bioactive compound intermediate.
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