Karl Hemming

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Organization: University of Huddersfield
Department: Institute for Materials, Medicines and Molecular Sciences, Division of Chemistry, School of Applied Sciences
Title:
Co-reporter:Muslih S. Hamasharif, Oliver E. P. Smith, Collette J. Curran, and Karl Hemming
ACS Omega March 2017? Volume 2(Issue 3) pp:1222-1222
Publication Date(Web):March 31, 2017
DOI:10.1021/acsomega.7b00211
N-Alkylation of 2-azidobenzenesulfonamide with 5-bromopent-1-ene gave an N-pentenyl sulfonamide, which underwent intramolecular aminohydroxylation to give an N-(2-azidoaryl)sulfonyl prolinol, a precursor for the synthesis of a pyrrolobenzothiadiazepine. The attempted N-alkylation of 2-azidobenzamide gave a separable mixture (∼1:1) of a benzotriazinone and a quinazolinone in a 72% combined yield. Other primary alkyl halides (3 examples) gave similar mixtures of benzotriazinones and quinazolinones. Benzylic, allylic, and secondary and tertiary alkyl halides (5 examples) gave only benzotriazinones in moderate yields. The results of mechanistic studies show the likely involvement of nitrene intermediates in the quinazolinone pathway and a second pathway involving a dimethylsulfoxide or dimethylsulfide-mediated conversion of 2-azidobenzamide into benzotriazinones.Topics: Heterocyclic compounds;
Co-reporter:J. Blackburn, G. Molyneux, A. Pitard, C. R. Rice, M. I. Page, S. Afshinjavid, F. A. Javid, S. J. Coles, P. N. Horton and K. Hemming  
Organic & Biomolecular Chemistry 2016 vol. 14(Issue 6) pp:2134-2144
Publication Date(Web):08 Jan 2016
DOI:10.1039/C5OB02586A
Sixteen new isothiazoloisoxazole 1,1-dioxides, one new isothiazolotriazole and one new isothiazolopyrazole have been synthesised by using 1,3-dipolar cycloadditions to isothiazole 1,1-dioxides. One sub-set of these isothiazoloisoxazoles showed low μM activity against a human breast carcinoma cell line, whilst a second sub-set plus the isothiazolotriazole demonstrated an interesting restricted rotation of sterically hindered bridgehead substituents. A thiazete 1,1-dioxide produced from one of the isothiazole 1,1-dioxides underwent conversion into an unknown 1,2,3-oxathiazolin-2-oxide upon treatment with Lewis acids, but was inert towards 1,3-dipoles and cyclopropenones. Six supporting crystal structures are included.
Co-reporter:Karl Hemming, Christopher S. Chambers, Muslih S. Hamasharif, Heidi João, Musharraf N. Khan, Nilesh Patel, Rachel Airley, Sharn Day
Tetrahedron 2014 70(40) pp: 7306-7317
Publication Date(Web):
DOI:10.1016/j.tet.2014.07.050
Co-reporter:Karl Hemming, Musharraf N. Khan, Paul A. O'Gorman, Arnaud Pitard
Tetrahedron 2013 69(4) pp: 1279-1284
Publication Date(Web):
DOI:10.1016/j.tet.2012.12.007
Co-reporter:Karl Hemming, Musharraf N. Khan, Vishnu V. R. Kondakal, Arnaud Pitard, M. Ilyas Qamar, and Craig R. Rice
Organic Letters 2012 Volume 14(Issue 1) pp:126-129
Publication Date(Web):December 21, 2011
DOI:10.1021/ol202924s
Pyridines have been formed by heating azabicyclo[3.2.0]hept-2-en-4-ones in toluene. The generation of a 3-azacyclopentadienone intermediate via a [2 + 2]-cycloreversion is proposed as the key step. A Diels–Alder reaction of a styrene, extrusion of carbon monoxide, and loss of hydrogen then gives the pyridine. The process parallels the well-known synthesis of benzenes from cyclopentadienones. The azabicyclo[3.2.0]hept-2-en-4-ones were synthesized from the reaction between readily available cyclopropenones and 1-azetines, in which the cyclopropenones behave as all-carbon 1,3-dipolar equivalents.
Co-reporter:Vishnu V.R. Kondakal, M. Ilyas Qamar, Karl Hemming
Tetrahedron Letters 2012 Volume 53(Issue 32) pp:4100-4103
Publication Date(Web):8 August 2012
DOI:10.1016/j.tetlet.2012.05.117
The reaction of cyclic imines (1-pyrrolines and piperideines) with a cyclopropenone leads to pyrrolizidines and indolizidines, respectively, each with a hydroxy group on the carbon atom at the bridgehead. The cyclopropenone functions as an all-carbon 1,3-dipole equivalent towards the cyclic imine in this reaction, and the cyclic imines used include polyhydroxylated systems, thus allowing access to australine, alexine and hyacinthacine type compounds. The pyrrolizidine products contain the core of the jenamidine and bohemamine natural products, which are of interest as cell-proliferation inhibitors and cell–cell adhesion inhibitors.
Co-reporter:Christopher S. Chambers, Nilesh Patel, Karl Hemming
Tetrahedron Letters 2010 Volume 51(Issue 37) pp:4859-4861
Publication Date(Web):15 September 2010
DOI:10.1016/j.tetlet.2010.07.050
Intramolecular 1,3-dipolar cycloaddition between an alkyne and an azide leads to a series of 1,2,3-triazolo-fused 1,4-benzodiazepines, 1,2,5-benzothiadiazepines, pyrrolobenzodiazepines and pyrrolobenzothiadiazepines (eight examples). The products are privileged structures in medicinal chemistry. The precursor azido alkynes are obtained, usually as transient intermediates, by treatment of the corresponding aldehydes (derived from α-amino acids) with the Bestmann–Ohira reagent.Treatment of N-(2-azidoaroyl)aminals with the Bestmann–Ohira reagent leads to triazolobenzodiazepines in high yields.
Co-reporter:J. Blackburn, G. Molyneux, A. Pitard, C. R. Rice, M. I. Page, S. Afshinjavid, F. A. Javid, S. J. Coles, P. N. Horton and K. Hemming
Organic & Biomolecular Chemistry 2016 - vol. 14(Issue 6) pp:NaN2144-2144
Publication Date(Web):2016/01/08
DOI:10.1039/C5OB02586A
Sixteen new isothiazoloisoxazole 1,1-dioxides, one new isothiazolotriazole and one new isothiazolopyrazole have been synthesised by using 1,3-dipolar cycloadditions to isothiazole 1,1-dioxides. One sub-set of these isothiazoloisoxazoles showed low μM activity against a human breast carcinoma cell line, whilst a second sub-set plus the isothiazolotriazole demonstrated an interesting restricted rotation of sterically hindered bridgehead substituents. A thiazete 1,1-dioxide produced from one of the isothiazole 1,1-dioxides underwent conversion into an unknown 1,2,3-oxathiazolin-2-oxide upon treatment with Lewis acids, but was inert towards 1,3-dipoles and cyclopropenones. Six supporting crystal structures are included.
2-AZETIDINETHIONE, 4-ETHENYL-4-METHYL-
2-Azetidinethione, 4-ethenyl-
PYRROLIDINE, 1-(2-AZIDOBENZOYL)-2-ETHENYL-, (2S)-
2-Pyrrolidinemethanol,1-[2-azido-5-methoxy-4-(phenylmethoxy)benzoyl]-, (2S)-
2-Pyrrolidinecarboxaldehyde,1-[2-azido-5-methoxy-4-(phenylmethoxy)benzoyl]-, (2S)-
(2S)-2-formyl-1-Pyrrolidinecarboxylic acid ethyl ester
Benzenesulfonamide, 2-azido-
(2S)-2-(hydroxymethyl)-1-Pyrrolidinecarboxylic acid ethyl ester
2-Azetidinone, 4-ethenyl-4-methyl-
Benzodiazepine