Search results for "4'"
showing 10 items of 814 documents
CCDC 727817: Experimental Crystal Structure Determination
2009
Related Article: P.Mal, B.Breiner, K.Rissanen, J.R.Nitschke|2009|Science|324|1697|doi:10.1126/science.1175313
CCDC 644919: Experimental Crystal Structure Determination
2008
Related Article: F.Durola, L.Russo, J.-P.Sauvage, K.Rissanen, O.S.Wenger|2007|Chem.-Eur.J.|13|8749|doi:10.1002/chem.200700684
CCDC 1490705: Experimental Crystal Structure Determination
2017
Related Article: Diego Rota Martir, Cristina Momblona, Antonio Pertegás, David B. Cordes, Alexandra M. Z. Slawin, Henk J. Bolink, and Eli Zysman-Colman|2016|ACS Applied Materials and Interfaces|8|33907|doi:10.1021/acsami.6b14050
Intramolecular versus intermolecular exchange pathways in the binuclear complex [Cu2(H2tea)2(4,4′-bipy)](ClO4)2·3H2O (H3tea=triethanolamine and 4,4′-…
2001
Abstract The binuclear copper(II) complex of formula [Cu2(H2tea)2(4,4′-bipy)](ClO4)2·3H2O (1) (H3tea=triethanolamine and 4,4′-bipy=4,4′-bipyridine) has been isolated and characterized by X-ray diffraction. Its structure consists of dinuclear [Cu2(H2tea)2(4,4′-bipy)]2+ cations, uncoordinated perchlorate anions and crystallization water molecules. Each copper atom exhibits a trigonal-bipyramidal environment with the three triethanolamine-oxygen atoms building the equatorial plane, and the triethanolamine-nitrogen and one of the 4,4′-bipy nitrogen atoms defining the three-fold axis. The 4,4′-bipy molecule acts as a bismonodentate bridging ligand, the copper–copper separation across it being 11…
Substituent effects in trans-p,p'-disubstituted azobenzenes: X-ray structures at 100 K and DFT-calculated structures.
2014
The crystal and molecular structures of twopara-substituted azobenzenes with π-electron-donating –NEt2and π-electron-withdrawing –COOEt groups are reported, along with the effects of the substituents on the aromaticity of the benzene ring. The deformation of the aromatic ring around the –NEt2group inN,N,N′,N′-tetraethyl-4,4′-(diazenediyl)dianiline, C20H28N4, (I), may be caused by steric hindrance and the π-electron-donating effects of the amine group. In this structure, one of the amine N atoms demonstrates clearsp2-hybridization and the other is slightly shifted from the plane of the surrounding atoms. The molecule of the second azobenzene, diethyl 4,4′-(diazenediyl)dibenzoate, C18H18N2O4,…
The two-dimensional iron(ii)–thiocyanate–4,4′-bipyridine coordination network
2010
The crystal structures of eight solvates of {Fe(4,4′-bipyridine)2(NCS)2}n have been determined. All of them contain a layered iron–bipyridine–thiocyanate framework formed from approximately square infinite two-dimensional (4,4) iron–bipyridine grids, with the solvent molecules hosted between adjacent layers. All the structures contain the iron(II) centres in the high-spin electronic configuration, and magnetic susceptibility measurements on the toluene and nitrobenzene solvates do not reveal any spin-crossover behaviour.
Expression and possible functions of the cholinergic system in a murine embryonic stem cell line.
2007
The expression of a cholinergic system during embryonic development is a widespread phenomenon. However, no precise function could be assigned to it during early pre-neural stages and there are only few studies that document when it precisely starts to be expressed. Here, we examined the expression of cholinergic components in a murine embryonic stem cell line by RT-PCR, histochemistry, and enzyme activity measurements; the acetylcholine (ACh) content was measured by HPLC. We have demonstrated that embryonic stem cells express ACh, acetylcholine receptors, choline acetyltransferase (ChAT), acetyl- and butyryl-cholinesterase (AChE and BChE). Butyryl-cholinesterase (BChE) expression was highe…
CCDC 1852850: Experimental Crystal Structure Determination
2019
Related Article: Qiang Chen, Stefan Thoms, Sven Stöttinger, Dieter Schollmeyer, Klaus Müllen, Akimitsu Narita, Thomas Basché|2019|J.Am.Chem.Soc.|141|16439|doi:10.1021/jacs.9b08320
CCDC 954557: Experimental Crystal Structure Determination
2013
Related Article: Zachary D. Brown , Petra Vasko , Jeremy D. Erickson , James C. Fettinger , Heikki M. Tuononen , and Philip P. Power|2013|J.Am.Chem.Soc.|135|6257|doi:10.1021/ja4003553
CCDC 157462: Experimental Crystal Structure Determination
2001
Related Article: A.B.Gaspar, M.C.Munoz, V.Niel, J.A.Real|2001|Inorg.Chem.|40|9|doi:10.1021/ic000788m