Search results for "cobalt."
showing 10 items of 969 documents
Influence of interfering gases on a carbon monoxide differential sensor based on SAW devices functionalized with cobalt and copper corroles
2021
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Ibuprofen degradation using a Co-doped carbon matrix derived from peat as a peroxymonosulphate activator
2021
The wider presence of pharmaceuticals and personal care products in nature is a major cause for concern in society. Among pharmaceuticals, the anti-inflammatory drug ibuprofen has commonly been found in aquatic and soil environments. We produced a Co-doped carbon matrix (Co-P 850) through the carbonization of Co2+ saturated peat and used it as a peroxymonosulphate activator to aid ibuprofen degradation. The properties of Co-P 850 were analysed using field emission scanning electron microscopy, energy filtered transmission electron microscopy and X-ray photoelectron spectroscopy. The characterization results showed that Co/Fe oxides were generated and tightly embedded into the carbon matrix …
CCDC 1914220: Experimental Crystal Structure Determination
2019
Related Article: Julia Vallejo, Marta Viciano-Chumillas, Francisco Lloret, Miguel Julve, Isabel Castro, J. Krzystek, Mykhaylo Ozerov, Donatella Armentano, Giovanni De Munno, Joan Cano|2019|Inorg.Chem.|58|15726|doi:10.1021/acs.inorgchem.9b01719
Cubane-Type Mo3CoS4 Molecular Clusters with Three Different Metal Electron Populations: Structure, Reactivity and Their Use in the Synthesis of Hybri…
2004
Heterodimetallic cubane-type complexes coordinated to diphosphanes [Mo(3)CoS(4)(dmpe)(3)Cl(4)](+) ([1](+)) (dmpe=1,2-bis(dimethylphosphanyl)ethane), [Mo(3)CoS(4)(dmpe)(3)Cl(4)] (1) and [Mo(3)CoS(4)(dmpe)(3)Cl(3)(CO)] (2) with 14, 15 and 16 metal electrons, respectively, have been prepared from the [Mo(3)S(4)(dmpe)(3)Cl(3)](+) trinuclear precursor using [Co(2)(CO)(8)] or CoCl(2) as cobalt source. Cluster complexes [1](+) and 1 are easily interconverted chemically and electrochemically. The Co-Cl distance increases upon electron addition and substitution of the chlorine atom coordinated to cobalt with CO only takes place in presence of a reducing agent to give complex 2. Structural changes in…
CCDC 1484384: Experimental Crystal Structure Determination
2018
Related Article: Lucas H. G. Kalinke, Jocielle C. O. Cardoso, Renato Rabelo, Ana K. Valdo, Felipe T. Martins, Joan Cano, Miguel Julve, Francesc Lloret, Danielle Cangussu|2018|Eur.J.Inorg.Chem.||816|doi:10.1002/ejic.201701177
CCDC 127034: Experimental Crystal Structure Determination
2000
Related Article: H.Brunner, D.Lucas, T.Monzon, Y.Mugnier, B.Nuber, B.Stubenhofer, A.C.Stuckl, J.Wachter, R.Wanninger, M.Zabel|2000|Chem.-Eur.J.|6|493|doi:10.1002/(SICI)1521-3765(20000204)6:3<493::AID-CHEM493>3.0.CO;2-E
CCDC 725083: Experimental Crystal Structure Determination
2010
Related Article: G.Agusti, C.Bartual, V.Martinez, F.J.Munoz-Lara, A.B.Gaspar, M.C.Munoz, J.A.Real|2009|New J.Chem.|33|1262|doi:10.1039/b905674b
CCDC 725084: Experimental Crystal Structure Determination
2010
Related Article: G.Agusti, C.Bartual, V.Martinez, F.J.Munoz-Lara, A.B.Gaspar, M.C.Munoz, J.A.Real|2009|New J.Chem.|33|1262|doi:10.1039/b905674b
CCDC 725085: Experimental Crystal Structure Determination
2010
Related Article: G.Agusti, C.Bartual, V.Martinez, F.J.Munoz-Lara, A.B.Gaspar, M.C.Munoz, J.A.Real|2009|New J.Chem.|33|1262|doi:10.1039/b905674b
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