Search results for "HOX"

showing 10 items of 1357 documents

CCDC 1449686: Experimental Crystal Structure Determination

2016

Related Article: Kaisa Helttunen, Maija Nissinen|2016|CrystEngComm|18|4944|doi:10.1039/C6CE00243A

catena-[bis(mu-281420-tetrapentyl-6121824-tetramethoxy-410:1622-bis(22'-(propane-13-diyldisulfanediyl)di(ethoxy))calix[4]arene)-tetrakis(mu-trifluoroacetato)-(trifluoroacetato)-penta-silver ethanol solvate monohydrate]Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 169974: Experimental Crystal Structure Determination

2002

Related Article: F.Thetiot, S.Triki, J.S.Pala, C.J.Gomez-Garcia|2002|J.Chem.Soc.,Dalton Trans.||1687|doi:10.1039/b107944c

catena-[bis(mu~2~-22-Dicyano-1-ethoxyethanolato)-aqua-copper(ii)]Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 910392: Experimental Crystal Structure Determination

2013

Related Article: Y.Inokuma,S.Yoshioka,J.Ariyoshi,T.Arai,Y.Hitora,K.Takada,S.Matsunaga,K.Rissanen,M.Fujita|2013|Nature (London)|495|461|doi:10.1038/nature11990

catena-[bis(mu~3~-246-tris(Pyridin-4-yl)-135-triazine)-hexakis(iodo)-tri-zinc(ii) 2-(34-dimethoxyphenyl)-35678-pentamethoxy-4H-chromen-4-one clathrate unknown solvate]Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 910391: Experimental Crystal Structure Determination

2013

Related Article: Y.Inokuma,S.Yoshioka,J.Ariyoshi,T.Arai,Y.Hitora,K.Takada,S.Matsunaga,K.Rissanen,M.Fujita|2013|Nature (London)|495|461|doi:10.1038/nature11990

catena-[bis(mu~3~-246-tris(Pyridin-4-yl)-135-triazine)-hexakis(iodo)-tri-zinc(ii) hemikis(2-(34-dimethoxyphenyl)-5678-tetramethoxy-4H-chromen-4-one) clathrate unknown solvate]Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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ChemInform Abstract: The Synthesis and Effect of Fluorinated Chalcone Derivatives on Nitric Oxide Production.

2010

Abstract Dimethoxy- and trimethoxychalcone derivatives, with various patterns of fluorination, were synthesized and evaluated for their influence on nitric oxide production. Some of them, chalcones 1 , 5 , 7 , 10 , 11 and 17 , inhibited NO production with an IC 50 in the submicromolar range; 17 is especially noteworthy because of its potency (IC 50 30 nM). These effects were not the consequence of a direct inhibitory action on enzyme activity but the inhibition of enzyme expression.

chemistry.chemical_classificationChalconebiologyChemistryTrimethoxychalconeGeneral MedicineCombinatorial chemistryEnzyme assayNitric oxidechemistry.chemical_compoundEnzymebiology.proteinPotencyNo productionChemInform
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Redox Materials by the Covalent Entrapment of Redox-Active Dirhodium(II,II) Species in a Siloxane Network

2004

Hydrolysis and polycondensation of the coupling agent (aminopropyl)triethoxysilane (APS), axially coordinated to the redox-active complex [Rh 2 (form) 2 (CH 3 COO) 2 -(APS) 2 ], lead to the insertion of redox-active inorganic microdomains into a siloxane network; the new polymers undergo cyclic redox reactions indicating that dirhodium(II,II) centres retain their redox activity even when incorporated into siloxane networks.

chemistry.chemical_classificationCondensation polymerPolymers and PlasticsOrganic Chemistrydirhodium complexesPolymerredox materialsRedoxchemistry.chemical_compoundHydrolysisdirhodium complexes; siloxanes; redox materialssiloxaneschemistryCovalent bondSiloxanemetal-polymer complexeTriethoxysilanePolymer chemistryMaterials Chemistryatomic force microscopy (AFM)dirhodiumredox-active materialSol-gel
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Synthesis of Processable Inorganic‐Organic Hybrid Polymers Based on Poly(silsesquioxanes): Grafting from Polymerization Using ATRP

2008

Inorganic-organic hybrid polymers have been synthesized utilizing atom transfer radical polymerization (ATRP) from a functionalized poly(methylsilsesquioxane) (PMSSQ) macroinitiator. Different polymeric ATRP initiators were prepared by co-condensation of functionalized trichlorosilanes with methyltrimethoxysilane. Various vinyl monomers have been successfully grafted from these macroinitiators, demonstrating a highly variable synthetic concept, which offers the chance to synthesize a wide spectrum of inorganic-organic hybrid polymers. All synthesized polymers were soluble in various organic solvents. Spin-coating these hybrid materials onto various substrates could produce stable and adhere…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsAtom-transfer radical-polymerizationMethyltrimethoxysilaneOrganic Chemistrytechnology industry and agriculturePolymerCondensed Matter PhysicsGraftingchemistry.chemical_compoundMonomerPolymerizationchemistryPolymer chemistryMaterials ChemistrySurface modificationPhysical and Theoretical ChemistryHybrid materialMacromolecular Chemistry and Physics
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Photoelectrocatalytic selective oxidation of 4-methoxybenzyl alcohol in water by TiO2 supported on titanium anodes

2013

The photoelectrocatalytic partial oxidation of 4-methoxybenzyl alcohol in aqueous solution irradiated by near-UV light was carried out in a three-electrode batch reactor. TiO2 films were either deposited by dip-coating of a TiO2 sol onto a Ti foil and subsequent calcination or generated on Ti plates by thermal oxidation in air at 400-700 degrees C. The effects of the anode preparation method and bias potential values on conversion and selectivity to the corresponding aldehyde were investigated. The photoelectrocatalytic results were compared with the photocatalytic and electrocatalytic ones. The results indicated that no reaction occurred during the electrocatalytic experiments, whereas the…

chemistry.chemical_classificationPhotoelectrocatalysis Titanium TiO2/Ti 4-Methoxybenzaldehyde Aromatic alcohols Green synthesisProcess Chemistry and TechnologyInorganic chemistryAlcoholAldehydeCatalysislaw.inventionchemistry.chemical_compoundchemistrylawBenzyl alcoholSaturated calomel electrodePhotocatalysisCalcinationReactivity (chemistry)Partial oxidationGeneral Environmental Science
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Electron-transfer reduction of selected alcohols with alkalide K−, K+(15-crown-5)2 via organometallic intermediates

2004

Abstract The course of the reaction of alkalide K − , K + (15-crown-5) 2 1 with selected alcohols depends on the kind of alcohol and the mode of substrate delivery. In the case of methanol, potassium methoxide formed initially undergoes destruction at the excess of 1 . It results in potassium oxide and methylpotassium. The latter opens the crown ether ring giving potassium tetraethylene glycoxide vinyl ether and methane. A similar course of the process is observed for propanol. Potassium glycidoxide is the main product formed in the reaction of 1 with glycidol. Its oxirane ring is opened at the excess of 1 . Organopotassium alkoxides, i.e., potassium potassiomethoxide and dipotassium potass…

chemistry.chemical_classificationPotassium methoxideAlkalidePotassiumOrganic Chemistrychemistry.chemical_elementVinyl etherBiochemistryPotassium oxideInorganic Chemistrychemistry.chemical_compoundchemistry15-Crown-5Polymer chemistryMaterials ChemistrymedicineOrganic chemistryMethanolPhysical and Theoretical ChemistryCrown ethermedicine.drugJournal of Organometallic Chemistry
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Unexpectedly ambivalent O-2 role in the autocatalytic photooxidation of 2-methoxybenzyl alcohol in water

2015

An unusual autocatalytic photooxidation of 2-methoxybenzyl alcohol has been observed under UV irradiation in aqueous medium. The homogeneous oxidation is catalyzed by the corresponding aldehyde that is also the main oxidation product. The trend of alcohol disappearance rate matches the typical shape of an autocatalytic process, where a crucial and ambivalent role is played by the presence of molecular oxygen. Low oxygen concentrations give rise to a zero-order reaction since the beginning of irradiation, while higher amounts of oxygen reduce the alcohol oxidation rate until the aldehyde reaches a concentration high enough to speed up the alcohol's conversion. Experiments performed by varyin…

chemistry.chemical_classificationSettore ING-IND/24 - Principi Di Ingegneria ChimicaAqueous solutionAutocatalytic photooxidation 2-Methoxybenzyl alcohol 2-Methoxybenzaldehyd O2 quenchingHomogeneous photocatalysisProcess Chemistry and Technologychemistry.chemical_elementAlcoholSettore CHIM/06 - Chimica OrganicaPhotochemistryOxygenAldehydeCatalysisCatalysisAutocatalysischemistry.chemical_compoundchemistrySettore CHIM/03 - Chimica Generale E InorganicaAlcohol oxidationPhysical and Theoretical ChemistryAbsorption (chemistry)
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