Search results for "Chloromethane"
showing 10 items of 692 documents
CCDC 1507211: Experimental Crystal Structure Determination
2017
Related Article: D.Ryvlin, O.Dumele, A.Linke, D.Fankhauser, W.B.Schweizer, F.Diederich, S.R.Waldvogel|2017|ChemPlusChem|82|493|doi:10.1002/cplu.201700077
CCDC 1520858: Experimental Crystal Structure Determination
2018
Related Article: Lauma Laipniece, Valdis Kampars, Sergey Belyakov, Andrejs Tokmakovs, Edgars Nitiss, Martins Rutkis|2019|Dyes Pigm.|162|394|doi:10.1016/j.dyepig.2018.10.035
CCDC 1549500: Experimental Crystal Structure Determination
2017
Related Article: Brian M. Barry, R. Graeme Soper, Juha Hurmalainen, Akseli Mansikkamäki, Katherine N. Robertson, William L. McClennan, Alex J. Veinot, Tracey L. Roemmele, Ulrike Werner-Zwanziger, René T. Boeré, Heikki M. Tuononen, Jason A. C. Clyburne, Jason D. Masuda|2018|Angew.Chem.,Int.Ed.|57|749|doi:10.1002/anie.201711031
CCDC 666841: Experimental Crystal Structure Determination
2008
Related Article: K.Raatikainen, J.Huuskonen, E.Kolehmainen, K.Rissanen|2008|Chem.-Eur.J.|14|3297|doi:10.1002/chem.200701862
CCDC 685282: Experimental Crystal Structure Determination
2009
Related Article: A.Jahel, N.V.Vologdin, N.Pirio, H.Cattey, P.Richard, P.Meunier, J.-C.Hierso|2008|Dalton Trans.||4206|doi:10.1039/b809244n
CCDC 776222: Experimental Crystal Structure Determination
2011
Related Article: N.K.Beyeh, M.Cetina, M.Lofman, M.Luostarinen, A.Shivanyuk, K.Rissanen|2010|Supramol.Chem.|22|737|doi:10.1080/10610278.2010.506543
CCDC 1427947: Experimental Crystal Structure Determination
2016
Related Article: Junzhi Liu, Akimitsu Narita, Silvio Osella, Wen Zhang, Dieter Schollmeyer, David Beljonne, Xinliang Feng, and Klaus Müllen|2016|J.Am.Chem.Soc.|138|2602|doi:10.1021/jacs.5b10399
CCDC 241028: Experimental Crystal Structure Determination
2004
Related Article: R.Nunez, O.Tutusaus, F.Teixidor, C.Vinas, R.Sillanpaa, R.Kivekas|2004|Organometallics|23|2273|doi:10.1021/om030635h
Liquid gas techniques for GC trace analysis
1990
Liquid gases (LG), i.e. low boiling compounds with vapor pressures below 5 bar at room temperature, are introduced as solvents for trace analyses. A system for preparin, diluting and handling LG solutions safely and conveniently in 5 to 500 μl amounts was developed as well as a syringe for direct injection of μl-LG samples into capillary GC. Even technical grade LG are of high purity. GC/FID of LG solutions (starting at −60°C) allows the separation of volatile traces from the solvent peak: e.g., dichloromethane can be measured in the picogram range.
A joint experimental and ab initio study on the reactivity of several hydroxy selenides. Stereoselective synthesis of cis-disubstituted tetrahydrofur…
2001
Abstract The reactivity of several hydroxy selenides bearing an ethereal chain with catalytic amounts of perchloric acid in dichloromethane was investigated. Results showed that the position of the oxygen atom with respect to the seleniranium ring was crucial in order to get a good yield of the cyclized product. The factors on which yields of the 5- endo cyclization of the seleniranium ions depend were analysed by ab initio (HF/3-21G ∗ ) studies. An explanation of the different coordinating ability, towards the positively charged selenium atom, of the allylic OMe and homoallylic OH-2 groups was given.