Search results for "Titani"

showing 10 items of 931 documents

CCDC 1917460: Experimental Crystal Structure Determination

2020

Related Article: A. Carel N. Kwamen, Marcel Schlottmann, David Van Craen, Elisabeth Isaak, Julia Baums, Li Shen, Ali Massomi, Christoph Räuber, Benjamin P. Joseph, Gerhard Raabe, Christian Göb, Iris M. Oppel, Rakesh Puttreddy, Jas S. Ward, Kari Rissanen, Roland Fröhlich, Markus Albrecht|2020|Chem.-Eur.J.|26|1396|doi:10.1002/chem.201904639

di-lithium tris(246-trimethylphenylmethyl 23-dioxybenzoate)-titaniumSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1825458: Experimental Crystal Structure Determination

2018

Related Article: Quentin Bonnin, Sook-Yen Wong, Cedric Balan, Virginie Comte, Raluca Malacea, Marie-Jose Penouilh, Philippe Richard, Gerald Kehr, Adrien T. Normand, Gerhard Erker, Pierre Le Gendre|2018|Eur.J.Inorg.Chem.|2018|3813|doi:10.1002/ejic.201800636

dichloro-((di-isopropylaminomethyl)-cyclopentadienyl)-(pentamethyl-cyclopentadienyl)-titaniumSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1985146: 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

dichloro-[13-bis(phenylimino)-1133-tetra(propan-2-yl)-13-triphosphan-2-yl]-titanium(iii)Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1825465: Experimental Crystal Structure Determination

2018

Related Article: Quentin Bonnin, Sook-Yen Wong, Cedric Balan, Virginie Comte, Raluca Malacea, Marie-Jose Penouilh, Philippe Richard, Gerald Kehr, Adrien T. Normand, Gerhard Erker, Pierre Le Gendre|2018|Eur.J.Inorg.Chem.|2018|3813|doi:10.1002/ejic.201800636

dichloro-bis((dibenzylaminomethyl)-cyclopentadienyl)-titaniumSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1825460: Experimental Crystal Structure Determination

2018

Related Article: Quentin Bonnin, Sook-Yen Wong, Cedric Balan, Virginie Comte, Raluca Malacea, Marie-Jose Penouilh, Philippe Richard, Gerald Kehr, Adrien T. Normand, Gerhard Erker, Pierre Le Gendre|2018|Eur.J.Inorg.Chem.|2018|3813|doi:10.1002/ejic.201800636

dichloro-cyclopentadienyl-((2266-tetramethylpiperidinylmethyl)-cyclopentadienyl)-titaniumSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Diossido di titanio e alcune sue applicazioni. Spunti didattici

2016

Il diossido di titanio, TiO2, ampiamente utilizzato come pigmento di colore bianco, è uno dei materiali più studiati nell’ambito della ricerca per le sue proprietà fotocatalitiche. Esso, infatti, contribuisce alla fotodegradazione di sostanze inquinanti, motivo per cui è utilizzato nel settore della purificazione dell’aria e dell’acqua e per la realizzazione di vetri autopulenti, disponibili commercialmente. Nel presente lavoro viene suggerito un percorso didattico con l’obiettivo di mettere in evidenza le proprietà fotocatalitiche del diossido di titanio oltre che può essere utilizzato per affrontare concetti fondamentali quali la struttura a bande dei solidi e la fotocatalisi. Il percorso…

diossido di titanio degradazione inquinanti fotocatalisi IBSE nanoparticelle vetri autopulentiSettore CHIM/02 - Chimica Fisica
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Influence of Surface-Related Phenomena on Mechanism, Selectivity, and Conversion of TiO2 -Induced Photocatalytic Reactions

2018

Heterogeneous photocatalysis is the result of an inextricable connection of several factors differently contributing to the overall process. Photon absorption is the “sine qua non” condition for the reaction to occur. In fact, photons can be considered as immaterial reactants, and all of the phenomena related to the interaction of light–matter play a prominent role. However, other factors contribute in a concerted way to address the reaction, so that the relative contribution of each of them is often difficult to evaluate. In this framework, the present paper highlights some aspects of the interaction of TiO 2 surface-adsorbate species that could be underestimated and their influence on the…

energy transferChemistrySine qua nonGeneral Chemical Engineering02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesElectron transferphotocatalysiGeneral EnergyAdsorptionwater dynamicsChemical physicsMechanism (philosophy)PhotocatalysisEnvironmental ChemistryGeneral Materials SciencetitaniumSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technologySelectivityChemSusChem
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CCDC 178473: Experimental Crystal Structure Determination

2002

Related Article: M.Horacek, P.Stepnicka, S.Gentil, K.Fejfarova, J.Kubista, N.Pirio, P.Meunier, F.Gallou, L.A.Paquette, K.Mach|2002|J.Organomet.Chem.|656|81|doi:10.1016/S0022-328X(02)01562-0

exoexo-(eta^2^-bis(trimethylsilyl)ethyne)-bis(eta^5^-4567-tetrahydro-47-methano-2-(trimethylsilyl)-indenyl)-titanium(ii)Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Is the re-use of sterilized implant abutments safe enough? (Implant abutment safety)

2019

Background: The reuse of implant healing abutments is common in dental practice. Effective elimination of bacteria and viruses is accomplished by conventional sterilization. The aim of this work was to explore the eventual survival of microorganisms on sterilized healing abutments and to rule out the presence of transmissible organic material after standard procedures. Material and Methods: A total of 55 healing abutments previously used in patients will be washed and sterilized in a steam autoclave at 121oC for 15 min. Each healing abutment will be cultured in Brain Heart Infusion broth (BHI) under strict aseptic conditions. Besides, two control groups will be included: one of 3 unused hea…

food.ingredientSurface PropertiesAbutmentDentistryDental AbutmentsAgar plateBioburden03 medical and health sciences0302 clinical medicinefoodDental AbutmentsHumansMedicineAgarGeneral DentistryDental ImplantsTitaniumOral Medicine and PathologyImplants dentalsbusiness.industryResearchDental implantsSterilization030206 dentistrySterilization (microbiology):CIENCIAS MÉDICAS [UNESCO]OtorhinolaryngologyUNESCO::CIENCIAS MÉDICASEsterilitzacióSurgeryAseptic processingImplantbusinessMedicina Oral Patología Oral y Cirugia Bucal
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Application of Potassium Ion Impregnated Titanium Dioxide as Nanocatalyst for Transesterification of Linseed Oil

2018

The current work comprises the investigation of biodiesel production from linseed oil using TiO2 and a potassium L-tartrate monobasic (C4H5KO6)-modified TiO2 nanocatalyst. Different amounts of C4H5KO6 were considered for TiO2 modification. The nanocatalyst TiO2–0.5C4H5KO6 (1:0.5 molar ratio) showed the best conversion rate for biodiesel production. The nanocatalyst was characterized by FTIR, XRD, TEM, BET, and XPS, and the Hammett indicator–benzenecarboxylic acid titration method was used for basicity measurement. The biodiesel was characterized by GC-MS and 1H and 13C NMR. Furthermore, the optimum reaction parameters for transesterification reaction were analyzed, and the yield was determi…

food.ingredientkasviöljyt020209 energyGeneral Chemical EngineeringPotassiumjalostusnanomateriaalitEnergy Engineering and Power Technologychemistry.chemical_elementbiodiesel02 engineering and technologychemistry.chemical_compoundfood020401 chemical engineeringLinseed oil0202 electrical engineering electronic engineering information engineering0204 chemical engineeringta116ta215nanocatalystMonobasic acidTransesterificationlinseed oiltransesterificationFuel TechnologychemistryBiodiesel productionkatalyysiTitanium dioxideNuclear chemistry
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