Search results for "HEXACO"
showing 10 items of 89 documents
CCDC 1417791: Experimental Crystal Structure Determination
2015
Related Article: Guobao Huang, Zhenfeng He, Chen-Xi Cai, Fangfang Pan, Dingqiao Yang, Kari Rissanen, Wei Jiang|2015|Chem.Commun.|51|15490|doi:10.1039/C5CC06768E
CCDC 1417790: Experimental Crystal Structure Determination
2015
Related Article: Guobao Huang, Zhenfeng He, Chen-Xi Cai, Fangfang Pan, Dingqiao Yang, Kari Rissanen, Wei Jiang|2015|Chem.Commun.|51|15490|doi:10.1039/C5CC06768E
CCDC 259752: Experimental Crystal Structure Determination
2005
Related Article: L.Toma, L.M.Toma, R.Lescouezec, D.Armentano, G.De Munno, M.Andruh, J.Cano, F.Lloret, M.Julve|2005|Dalton Trans.||1357|doi:10.1039/b500168b
CCDC 279523: Experimental Crystal Structure Determination
2007
Related Article: L.M.Toma, L.D.Toma, F.S.Delgado, C.Ruiz-Perez, J.Sletten, J.Cano, J.M.Clemente-Juan, F.Lloret, M.Julve|2006|Coord.Chem.Rev.|250|2176|doi:10.1016/j.ccr.2005.11.018
CCDC 1841391: Experimental Crystal Structure Determination
2018
Related Article: Miguel A. Rivero-Crespo, Marta Mon, Jesús Ferrando-Soria, Christian W. Lopes, Mercedes Boronat, Antonio Leyva-Pérez, Avelino Corma, Juan C. Hernández-Garrido, Miguel López-Haro, Jose J. Calvino, Enrique V. Ramos-Fernandez, Donatella Armentano, Emilio Pardo|2018|Angew.Chem.,Int.Ed.|57|17094|doi:10.1002/anie.201810251
CCDC 1899330: Experimental Crystal Structure Determination
2020
Related Article: Ondřej Jurček, Rakesh Puttreddy, Filip Topić, Pia Jurček, Pezhman Zarabadi-Poor, Hendrik V. Schröder, Radek Marek, Kari Rissanen|2020|Cryst.Growth Des.|20|4193|doi:10.1021/acs.cgd.0c00532
CCDC 2044601: Experimental Crystal Structure Determination
2021
Related Article: Xiting Yuan, Sami Malola, Guocheng Deng, Fengjiao Chen, Hannu Häkkinen, Boon K. Teo, Lansun Zheng, Nanfeng Zheng|2021|Inorg.Chem.|60|3529|doi:10.1021/acs.inorgchem.0c03462
Adducts of Tellurium Tetrachloride with Allyl Alcohol and Allyl Acetate: 1,2- vs 1,3-Addition and Structure and Dynamics of Te···O Interactions in D…
2002
The compounds Cl 3 Te[CH 2 CH(Cl)CH 2 O(H)...].Cl 2 Te[-CH 2 CH(Cl)CH 2 O-] (1) and Cl 3 Te-[CH 2 CH(CH 2 Cl)OC(CH 3 )=O...] (2) were prepared by the reaction of TeCl 4 with allyl alcohol and allyl acetate, respectively. Their molecular and crystal structures were investigated by single-crystal X-ray analysis, 1 H- 1 H-NOESY experiments, IR spectroscopy, and ab initio geometry optimization. 1 is a composite compound, whose subunits Cl 2 Te[-CH 2 CH(Cl)-CH 2 O-] (1A) and Cl 3 Te[CH 2 CH(Cl)CH 2 O(H))...] (1B) are linked in the solid state via Te...Cl-Te and O...H-O bridges. Both Te atoms are involved in similar five-membered rings, having a covalent Te-O bond in one case (1A) and a dative Te…
Investigations on organoantimony compounds
1977
Abstract Trichlorodiorganoantimony(V) compounds, R2SbCl3, in which the antimony atom is part of a heterocyclic ring have been synthesized. They have been converted into the corresponding tetramethylammonium tetrachlorodiorganoantimonates, [R2SbCl4]− [Me4N]+, which are hexacoordinate diorganoantimony(V) species in which the antimony-carbon bonds are forced into a cis-position. 5,5,5-Trichlorodibenzostibole, 10,10,10-trichlorophenoxantimonin, 5,5,5-trichloro-5,10-dihydrodibenz[b, e]antimonin and 5,5,5-trichloro-10,11-dihydro-5H-dibenzo[b, f]stibepin have been prepared by chlorination of the corresponding heterocyclic chlorodiarylstibines. Heterocyclic trichlorodialkylantimony(V) compounds hav…
The nerve hemoglobin of the bivalve mollusc Spisula solidissima
2006
Abstract Members of the hemoglobin (Hb) superfamily are present in nerve tissue of several vertebrate and invertebrate species. In vertebrates they display hexacoordinate heme iron atoms and are typically expressed at low levels (μm). Their function is still a matter of debate. In invertebrates they have a hexa- or pentacoordinate heme iron, are mostly expressed at high levels (mm), and have been suggested to have a myoglobin-like function. The native Hb of the surf clam, Spisula solidissima, composed of 162 amino acids, does not show specific deviations from the globin templates. UV-visible and resonance Raman spectroscopy demonstrate a hexacoordinate heme iron. Based on the sequence analo…