Search results for "UE"

showing 10 items of 55990 documents

Effect of Guest Molecules on Spin Transition Temperature in Loaded Hofmann‐Like Clathrates with Improved Porosity

2020

The synthesis, crystal structure, magnetic and calorimetric studies of a new clathrate compound of the Hofmann-type spin crossover (SCO) metal-organic framework (MOF) {Fe(bpb)[MII(CN)4]}·xGuest (bpb = bis(4-pyridyl)butadiyne, and MII = Ni, Pt) with characteristic fsc topology is reported. The framework {Fe(bpb)[MII(CN)4]} can host up to 1.5 guest molecules of (trifluoromethyl)benzene and display complete one-step cooperative SCO behavior. Our systematic study on {Fe(bpb)[Pt(CN)4]}·xGuest shows a general reciprocal correlation between the SCO temperature with the volume of the guest molecules.

010405 organic chemistryChemistrySpin transition010402 general chemistry01 natural sciences0104 chemical sciences3. Good healthInorganic ChemistryCrystallographySpin crossoverMoleculeMetal-organic frameworkHost–guest chemistryPorosityEuropean Journal of Inorganic Chemistry
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Regio- and Stereoselective Synthesis of 3-Pyrazolylidene-2-oxindole Compounds by Nucleophilic Vinylic Substitution of (E)-3-(Nitromethylene)indolin-2…

2019

[EN] A highly regio- and stereoselective synthesis of 3-alkylidene-2-oxindoles has been described through a nucleophilic vinylic substitution (SNV) of (E)-3-(nitromethylene)indolin-2-one using pyrazol-3-ones as nucleophiles and Et3N as a base. The reaction affords selectively the Z-isomer when pyrazol-3-ones without substituents at the 4 position are used. While the reaction is E-selective with 4- substituted pyrazolones. The stereoselectivity (up to >20:1) and the yields (up to 98%) are very high under mild reaction conditions.

010405 organic chemistryChemistryStereochemistryEstereoquímica2-oxindoleSubstitution (logic)2-oxindoleStereoselectivityGeneral ChemistryIndolin 2 one010402 general chemistry01 natural sciences0104 chemical sciencesReaccions químiquesRegioselectivityNucleophileFISICA APLICADAmedia_common.cataloged_instancePyrazoloneStereoselectivityEuropean unionmedia_commonVinylic substitution
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Green synthesis of cavity-containing manganese oxides with superior catalytic performance in toluene oxidation

2019

10 Figuras.- 2 Tablas.- Datos suplementarios disponibles en línea en la página web del editor.-- © 2019. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/

010405 organic chemistryChemistryStructural waterProcess Chemistry and TechnologyInorganic chemistryCationic polymerizationVOCs oxidationchemistry.chemical_elementNanoparticleManganeseCavities010402 general chemistry01 natural sciences7. Clean energyOxygenTolueneCatalysisHydrothermal circulationToluene oxidation0104 chemical sciencesCatalysischemistry.chemical_compoundManganese oxideToluene
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Halogen bonds in 2,5-dihalopyridine-copper(II) chloride complexes

2018

Ten coordination complexes obtained through a facile reaction between 2,5-dihalopyridines and copper(II) chloride (CuCl2) are characterized using single crystal X-ray diffraction. Two series of dihalopyridine complexes based on 2-chloro-5-X-pyridine and 2-bromo-5-X-pyridine (X = F, Cl, Br and I) were prepared to analyze the C–X2/X5⋯Cl–Cu halogen bonds (XB). The influence of X2- and X5-substituents on the respective interactions was examined by comparing them to the X2/X3⋯Cl–Cu XBs found in mono-substituted halopyridine complexes, (n-X-pyridine)2·CuCl2 (n = 2, 3 and X = Cl, Br and I). Varying the X5-halogens in (2,5-dihalopyridine)2·CuCl2, the C5–X5⋯Cl–Cu XBs follow the order F5 1 and they c…

010405 organic chemistryChemistrySubstituentchemistry.chemical_elementGeneral Chemistrykompleksiyhdisteet010402 general chemistryCondensed Matter Physics01 natural sciencesChlorideCopperchemical bonds0104 chemical scienceschemistry.chemical_compoundCrystallographykemialliset sidoksetHalogenmedicineCopper(II) chlorideGeneral Materials Sciencecoordination complexesPolarization (electrochemistry)Single crystalta116medicine.drugCrystEngComm
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Arene C−H Activation at Aluminium(I): meta Selectivity Driven by the Electronics of S N Ar Chemistry

2020

The reactivity of the electron-rich anionic Al(I) ('aluminyl') compound K 2 [(NON)Al] 2 (NON = 4,5-bis(2,6-diisopropylanilido)-2,7-di- tert -butyl-9,9-dimethylxanthene) towards mono- and disubstituted arenes is reported. C-H activation chemistry with n -butylbenzene gives exclusively the product of activation at the arene meta position. Mechanistically, this transformation proceeds in a single step via a concerted Meisenheimer-type transition state. Selectivity is therefore based on similar electronic factors to classical S N Ar chemistry, which implies the destabilization of transition states featuring electron-donating groups in either the ortho or the para positions. In the cases of tolu…

010405 organic chemistryChemistryXyleneSubstituentGeneral Chemistry010402 general chemistry01 natural sciencesMedicinal chemistryTolueneCatalysisTransition state0104 chemical sciences3. Good healthchemistry.chemical_compoundMeta-Nucleophilic aromatic substitutionReactivity (chemistry)SelectivityAngewandte Chemie International Edition
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A Decade of Electrochemical Dehydrogenative C,C-Coupling of Aryls.

2019

The importance of sustainable and green synthetic protocols for the synthesis of fine chemicals has rapidly increased during the last decades in an effort to reduce the use of fossil fuels and other finite resources. The replacement of common reagents by electricity provides a cost- and atom-efficient, environmentally friendly, and inherently safe access to novel synthetic routes. The selective formation of carbon-carbon bonds between two distinct substrates is a crucial tool in organic chemistry. This fundamental transformation enables access to a broad variety of complex molecular architectures. In particular, the aryl-aryl bond formation has high significance for the preparation of organ…

010405 organic chemistryChemistrybusiness.industryFossil fuelMolecular ConformationGeneral MedicineGeneral ChemistryElectrochemical Techniques010402 general chemistryElectrochemistry01 natural sciencesCombinatorial chemistryHydrocarbons Aromatic0104 chemical sciencesC c couplingHydrogenationbusinessAccounts of chemical research
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Sequential Nucleophilic−Electrophilic Reactions Selectively Produce Isomerically Pure Nona‐ B ‐Substituted o ‐Carborane Derivatives

2003

Nine equal substituents on the intensively studied o-carborane have been obtained for the first time by a combined nucleophilic-electrophilic reaction sequence. Iodine and methyl groups have been introduced to prove the generality of the method. (© Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2003)

010405 organic chemistryChemistrychemistry.chemical_element010402 general chemistryIodine01 natural sciences0104 chemical sciences3. Good healthInorganic ChemistryReaction sequenceNucleophileElectrophileCarboraneOrganic chemistryBoronEuropean Journal of Inorganic Chemistry
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The photochemistry of mono- and dinuclear cyclometalated bis(tridentate)ruthenium(ii) complexes: dual excited state deactivation and dual emission

2016

The synthesis and characterization of a series of weakly emissive mononuclear cyclometalated [Ru(dpb-R)(tpy)](+) complexes with functional groups R of varying electron-donating characters at the dpb ligand are described (dpbH = 1,3-di(2-pyridyl)benzene, tpy = 2,2';6',2''-terpyridine, 1(+): R = NHCOMe, 2(+): R = NH2, 3(+): R = COOEt, 4(+): R = COOH). Steady-state emission spectroscopy in the temperature range between 298 K and 77 K revealed a previously unrecognized excited state deactivation pathway via low-lying triplet ligand-to-ligand ((3)LL'CT) charge transfer states in addition to the well-known pathway via(3)MC states. Thermal activation barriers for depopulation of the emissive metal…

010405 organic chemistryDexter electron transferSubstituentchemistry.chemical_elementAtmospheric temperature range010402 general chemistryPhotochemistry01 natural sciencesTransition state0104 chemical sciencesRutheniumInorganic Chemistrychemistry.chemical_compoundchemistryExcited stateAmideEmission spectrumDalton Transactions
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Hydrogen-Bonded Open-Framework with Pyridyl-Decorated Channels: Straightforward Preparation and Insight into Its Affinity for Acidic Molecules in Sol…

2017

International audience; An hydrogen-bonded open framework with pores decorated by pyridyl groups has been constructed following an off-charge-stoichiometry assemblage of protonated tetrakis(4-pyridyl-oxymethyl)methane and [Al(oxalate)3]3-, respectively the H-bond donor and acceptor of the ionic H-bond interactions. This supramolecular porous architecture (SPA-2) possesses 1 nm-large pores interconnected in 3D with high solvent accessible void (53%). It demonstrated remarkable affinity for acidic organic molecules in solution, which was investigated by the means of various carboxylic acids including larger drug molecules. Noteworthy, competing sorption between acetic acid and its halogenated…

010405 organic chemistryHydrogen bondChemistryOrganic ChemistrySupramolecular chemistryIonic bondingProtonationSorptionGeneral ChemistryHydrogen-Bonding010402 general chemistry[ CHIM ] Chemical Sciences01 natural sciencessupramolecular chemistryCatalysis0104 chemical sciencesSolventPolymer chemistryhost-guest chemistry[CHIM]Chemical SciencesMoleculeOrganic chemistryoxalate complexporous materialHost–guest chemistryChemistry (Weinheim an der Bergstrasse, Germany)
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2017

The title compound, C12H9BrN2O3, was prepared in two steps from 2-chloro-3-nitropyridine. The nitrobiaryl unit is twisted, with dihedral angles of 35.4 (5)° between the nitro substituent and the pyridine ring to which it is bound, and 51.0 (5)° between the nitro group and the benzene ring. In the crystal, the molecules are connectedviaC—H...O hydrogen bonds, forming strands along theb-axis direction.

010405 organic chemistryHydrogen bondSubstituentCrystal structureDihedral angle010403 inorganic & nuclear chemistryRing (chemistry)01 natural sciences0104 chemical sciencesCrystallographychemistry.chemical_compoundchemistryPyridineNitroBenzeneIUCrData
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