Search results for "Acenaphthylene"
showing 10 items of 15 documents
CCDC 749971: Experimental Crystal Structure Determination
2010
Related Article: Y.Rousselin, N.Sok, F.Boschetti, R.Guilard, F.Denat|2010|Eur.J.Org.Chem.|2010|1688|doi:10.1002/ejoc.200901183
Naphthalene production by microorganisms associated with termites: Evidence from a microcosm experiment
2009
Abstract There have been several reports published which suggest that it is possible that the polycyclic aromatic hydrocarbons (PAHs) naphthalene (NAPH), phenanthrene (PHEN) and perylene (PERY) in tropical environments have a biological source. This source might be related to the activity of termites or their associated microorganisms. We aimed to provide direct evidence for the biological production of NAPH, PHEN and PERY by conducting microcosm experiments in the State of Tocantins, Brazil, in which termite nests (with or without termites) were placed in an enclosed environment in which we controlled all PAH fluxes and monitored changes of PAH stocks. The experiments were carried out with…
Crystal structure of 5′′-(4-chlorobenzylidene)-4′-(4-chlorophenyl)-1′-methyltrispiro[acenapthylene-1,2′-pyrrolidine-3′,1′′-cyclohexane-3′′,2′′′-[1,3]…
2015
In the title compound, C36H29Cl2NO4, two spiro links connect the methyl-substituted pyrrolidine ring to the acenaphthylene and cyclohexanone rings. The cyclohexanone ring is further connected to the dioxalane ring by a third spiro junction. The five-membered ring of the acenaphthylen-1-one ring system adopts a flattened envelope conformation, with the ketonic C atom as the flap, whereas the dioxalane and pyrrolidine rings each have a twist conformation. The cyclohexenone ring assumes a boat conformation. An intramolecular C—H...O hydrogen-bond interaction is present. In the crystal, molecules are linked by non-classical C—H...O hydrogen bonds, forming chains extending parallel to theaaxis.
CCDC 1042277: Experimental Crystal Structure Determination
2015
Related Article: Shizhen Du, Qifeng Xing, Zygmunt Flisak, Erlin Yue, Yang Sun, Wen-Hua Sun|2015|Dalton Trans.|44|12282|doi:10.1039/C5DT00052A
CCDC 1405449: Experimental Crystal Structure Determination
2015
Related Article: Saoussen Haddad, Sarra Boudriga, François Porzio, Armand Soldera, Moheddine Askri, Michael Knorr, Yoann Rousselin, Marek M. Kubicki, Christopher Golz, and Carsten Strohmann|2015|J.Org.Chem.|80|9064|doi:10.1021/acs.joc.5b01399
CCDC 1042276: Experimental Crystal Structure Determination
2015
Related Article: Shizhen Du, Qifeng Xing, Zygmunt Flisak, Erlin Yue, Yang Sun, Wen-Hua Sun|2015|Dalton Trans.|44|12282|doi:10.1039/C5DT00052A
CCDC 1831144: Experimental Crystal Structure Determination
2018
Related Article: Ruikai Wu, Yifan Wang, Randi Zhang, Cun-Yue Guo, Zygmunt Flisak, Yang Sun, Wen-Hua Sun|2018|Polymer|153|574|doi:10.1016/j.polymer.2018.08.056
CCDC 1831143: Experimental Crystal Structure Determination
2018
Related Article: Ruikai Wu, Yifan Wang, Randi Zhang, Cun-Yue Guo, Zygmunt Flisak, Yang Sun, Wen-Hua Sun|2018|Polymer|153|574|doi:10.1016/j.polymer.2018.08.056
CCDC 856602: Experimental Crystal Structure Determination
2012
Related Article: S.Schwolow, D.Schollmeyer, T.Opatz|2012|Z.Naturforsch.,B:Chem.Sci.|67|272|doi:10.5560/ZNB.2012.67b0272
CCDC 1518489: Experimental Crystal Structure Determination
2017
Related Article: Martin Herder, Fabian Eisenreich, Aurelio Bonasera, Anna Grafl, Lutz Grubert, Michael Pätzel, Jutta Schwarz, Stefan Hecht|2017|Chem.-Eur.J.|23|3743|doi:10.1002/chem.201605511