Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Catherine R. Copeland"'
Autor:
Chad R. Maheux, Catherine R. Copeland, J. Stuart Grossert, Anthony Linden, Idralyn Q. Alarcon, T. Stanley Cameron
Publikováno v:
Drug Testing and Analysis
Ethylone, a synthetic cathinone with psychoactive properties, is a designer drug which has appeared on the recreational drug market in recent years. Since 2012, illicit shipments of ethylone hydrochloride have been intercepted with increasing frequen
Autor:
Chad R. Maheux, Catherine R. Copeland
Publikováno v:
Drug Testing and Analysis. 4:17-23
The hydrochloride salts of buphedrone and pentedrone, two new designer drugs, have recently been identified in shipments destined for Canada. To confirm their identities, we have synthesized reference materials for these methcathinone analogues and h
Inversion twinning in a second polymorph of the hydrochloride salt of the recreational drug ethylone
Autor:
Anthony Linden, T. Stanley Cameron, Idralyn Q. Alarcon, Catherine R. Copeland, J. Stuart Grossert, Chad R. Maheux
A second polymorph of the hydrochloride salt of the recreational drug ethylone, C12H16NO3+·Cl−, is reported [systematic name: (±)-2-ethylammonio-1-(3,4-methylenedioxyphenyl)propane-1-one chloride]. This polymorph, denoted form (A), appears in cry
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::5497265a0c6cc35b9f68e6780a78a98a
https://doi.org/10.5167/uzh-110204
https://doi.org/10.5167/uzh-110204
Autor:
Chad R, Maheux, Catherine R, Copeland
Publikováno v:
Drug testing and analysis. 4(1)
The hydrochloride salts of buphedrone and pentedrone, two new designer drugs, have recently been identified in shipments destined for Canada. To confirm their identities, we have synthesized reference materials for these methcathinone analogues and h
Publikováno v:
Tetrahedron Letters. 26:5253-5256
Autor:
Gary I. Dmitrienko, Anthony J. Clarke, Thammaiah Viswanatha, Marc E. Savard, Lee D. Arnold, Catherine R. Copeland
Publikováno v:
Bioorganic Chemistry. 13:34-46
A number of 6-β-sulfonamidopenicillanic acid sulfones were examined for their ability to inhibit Bacillus cereus 569 H β-lactamase I. Among these, 6-β-trifluoromethane sulfonamidopenicillanic acid sulfone was found to be the most potent inhibitor,