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Synthesis, transformations and biological activity of chloro enamines and ynamines derived from chloroalkenyl- and alkynyl-N -substituted purine and pyrimidine bases of nucleic acids . Ramachandra V. Joshi, Ze-Qi Xu, Mohamad B. Ksebati, David Kessel, Thomas H. Corbett, John C. Drach, Jiri Zemlicka
, J. Chem. Soc., Perkin Trans. 1
, 1994
, 1089
Laser pyrolysis studies of the thermal decomposition of chlorinated organic compounds. Part 1—acyl chlorides . Grant R. Allen, Douglas K. Russell
, New J. Chem.
, 2004
, 28
, 1107
Synthesis and X-Ray Crystal Structure of 1,2-Dichloro-1,2-bis(phenyltellanyl)ethylene . Georges Le Guillanton, Alexander V. Martynov, Jacques Delaunay, Nicolas Mercier, Amédée Riou
, J. Chem. Res. (S)
, 1998
, 681
Dechlorination of chloroethylenes by cob(i )alamin and cobalamin model complexes . Sarah Kliegman, Kristopher McNeill
, Dalton Trans.
, 2008
, 4191
A robust and modular synthesis of ynamides . Steven J. Mansfield, Craig D. Campbell, Michael W. Jones, Edward A. Anderson
, Chem. Commun.
, 2015
, 51
, 3316
Protecting carbohydrates with ethers, acetals and orthoesters under basic conditions . Yang Liang, Christian M. Pedersen
, Org. Biomol. Chem.
, 2021
, 19
, 7598
Comment on “Glycine-functionalized copper(ii ) hydroxide nanoparticles with high intrinsic superoxide dismutase activity” by K. Korschelt, R. Ragg, C. S. Metzger, M. Kluenker, M. Oster, B. Barton, M. Panthöfer, D. Strand, U. Kolb, M. Mondeshki, S. Strand, J. Brieger, M. N. Tahir and W. Tremel, Nanoscale , 2017, 9 , 3952 . Dieter Lenoir, Karl-Werner Schramm
, Nanoscale
, 2017
, 9
, 15717
Heterobimetallic μ2 -halocarbyne complexes . Liam K. Burt, Rian D. Dewhurst, Anthony F. Hill, Richard Y. Kong, Emily E. Nahon, Chee S. Onn
, Dalton Trans.
, 2022
, 51
, 12080
Emission spectra of Cl—CC—Cl+ , Br—CC—Br+ and I—CC—I+ radical cations: Ã
2 Π
g
→X
2 Π
u
band systems and the decay of the Ã
2 Π
g
states . Michael Allan, Else Kloster-Jensen, John P. Maier
, J. Chem. Soc., Faraday Trans. 2
, 1977
, 73
, 1417
Experimental investigation and modeling of the kinetics of CCl4
pyrolysis behind reflected shock waves using high-repetition-rate time-of-flight mass spectrometry . M. Aghsaee, A. Drakon, A. Eremin, S. H. Dürrstein, H. Böhm, H. Somnitz, M. Fikri, C. Schulz
, Phys. Chem. Chem. Phys.
, 2013
, 15
, 2821