Search results for "INO"
showing 10 items of 50751 documents
Ternary transition metals sulfides in hydrotreating catalysis.
2007
International audience; Pure microcrystalline barium molybdate BaMoO4 and barium tungstate BaWO4 materials were prepared by molten flux reaction using alkali metal nitrates as reaction media. The obtained crystals have rhombic shape and expose mostly (111) crystallographic planes. Their mean size depends on the flux temperature and the nature of the alkali metal cation. Monomeric molybdate and tungstate used as precursors yield target products already at 673 K whereas if polymerized ammonium oxosalts were used, then higher temperatures were necessary to obtain barium salts. The optimal temperature for the preparation of pure crystals with well defined shape was found to be near 773 K. UV–vi…
Ceļš: Latvijas Universitātes Teoloģijas fakultātes teoloģisks un kultūrvēsturisks izdevums, Nr. 59
2009
Finansiālais atbalstītājs - Ziemeļelbas Evaņģēliski luteriskajai baznīca (Vācija)
Phosphorous doping and drawing effects on the Raman spectroscopic properties of O=P bond in silica-based fiber and preform.
2012
International audience; We report an experimental study of the doping and drawing effects on the Raman activities of phosphorus (P)-doped silica-based optical fiber and its related preform. Our data reveal a high sensitivity level in the full width at half maximum value of the 1330 cm−1 (O = P) Raman band to the P-doping level. Its increase with the P doping level does not clash with an increase in the disorder of the O = P surrendering matrix. In addition, we observe that in the central core region of the sample (higher doping level), the drawing process decreases the relative band amplitude. We tentatively suggest that this phenomenon is due to the change in the first derivate of the bond…
CCDC 1985143: Experimental Crystal Structure Determination
2020
Related Article: Adrien T. Normand, E. Daiann Sosa Carrizo, Corentin Magnoux, Esteban Lobato, Hélène Cattey, Philippe Richard, Stéphane Brandès, Charles H. Devillers, Anthony Romieu, Pierre Le Gendre, Paul Fleurat-Lessard|2021|Chemical Science|12|253|doi:10.1039/D0SC04736H
CCDC 1405505: Experimental Crystal Structure Determination
2015
Related Article: Rudy M. Brown, Javier Borau Garcia, Juuso Valjus, Christopher J. Roberts, Heikki M. Tuononen, Masood Parvez, and Roland Roesler|2015|Angew.Chem.,Int.Ed.|54|6274|doi:10.1002/anie.201500453
CCDC 807437: Experimental Crystal Structure Determination
2011
Related Article: R.Outouch, B.Boualy, M.A.Ali, L.E.Firdoussi, C.Rizzoli|2011|Acta Crystallogr.,Sect.E:Struct.Rep.Online|67|o195|doi:10.1107/S1600536810052323
CCDC 880908: Experimental Crystal Structure Determination
2013
Related Article: N.Probst, A.Madarasz, A.Valkonen, I.Papai, K.Rissanen, A.Neuvonen, P.M.Pihko|2012|Angew.Chem.,Int.Ed.|51|8495|doi:10.1002/anie.201203852
CCDC 802518: Experimental Crystal Structure Determination
2011
Related Article: O.Wichmann, H.Sopo, A.Lehtonen, R.Sillanpaa|2011|Eur.J.Inorg.Chem.||1283|doi:10.1002/ejic.201001251
CCDC 1424160: Experimental Crystal Structure Determination
2016
Related Article: Akram Ali, Debanjan Dhar, Suman K. Barman, Francesc Lloret, and Rabindranath Mukherjee|2016|Inorg.Chem.|55|5759|doi:10.1021/acs.inorgchem.5b02688
CCDC 1424158: Experimental Crystal Structure Determination
2016
Related Article: Akram Ali, Debanjan Dhar, Suman K. Barman, Francesc Lloret, and Rabindranath Mukherjee|2016|Inorg.Chem.|55|5759|doi:10.1021/acs.inorgchem.5b02688