Search results for "Cristallography"

showing 10 items of 65 documents

Towards Iron(II) Complexes with Octahedral Geometry: Synthesis, Structure and Photophysical Properties

2020

The control of ligand-field splitting in iron (II) complexes is critical to slow down the metal-to-ligand charge transfer (MLCT)-excited states deactivation pathways. The gap between the metal-centered states is maximal when the coordination sphere of the complex approaches an ideal octahedral geometry. Two new iron(II) complexes (C1 and C2), prepared from pyridylNHC and pyridylquinoline type ligands, respectively, have a near-perfect octahedral coordination of the metal. The photophysics of the complexes have been further investigated by means of ultrafast spectroscopy and TD-DFT modeling. For C1, it is shown that&mdash

[CHIM.INOR] Chemical Sciences/Inorganic chemistryLigand field theoryCoordination sphereMaterials scienceIronPharmaceutical Scienceexcited states dynamics[CHIM.INOR]Chemical Sciences/Inorganic chemistryCrystallography X-RayLigands010402 general chemistry01 natural sciencesArticletime-resolved spectroscopyAnalytical Chemistrylcsh:QD241-441MetalX-Ray Diffractionlcsh:Organic chemistryDrug DiscoveryOctahedral molecular geometry[CHIM.CRIS]Chemical Sciences/Cristallographyiron (II) complexes[CHIM.COOR]Chemical Sciences/Coordination chemistryFerrous Compounds[CHIM.CRIS] Chemical Sciences/CristallographyPhysical and Theoretical Chemistryoctahedral geometrydensity functional theoryComputingMilieux_MISCELLANEOUSMolecular Structure010405 organic chemistryLigandOrganic Chemistry[CHIM.COOR] Chemical Sciences/Coordination chemistry0104 chemical sciences3. Good healthCrystallographyOctahedron[CHIM.OTHE] Chemical Sciences/OtherChemistry (miscellaneous)Excited statevisual_artvisual_art.visual_art_mediumThermodynamicsMolecular MedicineDensity functional theory[CHIM.OTHE]Chemical Sciences/Other
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Monitoring a Mechanochemical Reaction Reveals the Formation of a New ACC Defect Variant Containing the HCO 3 – Anion Encapsulated by an Amorphous Mat…

2020

Crystal growth & design 20(10), 6831 - 6846 (2020). doi:10.1021/acs.cgd.0c00912

[CHIM.INOR]Chemical Sciences/Inorganic chemistry010402 general chemistry01 natural sciencesPyrophosphatelaw.inventionchemistry.chemical_compoundlaw[CHIM.CRIS]Chemical Sciences/CristallographyGeneral Materials ScienceCrystallization010405 organic chemistryGeneral Chemistry[CHIM.MATE]Chemical Sciences/Material chemistryCondensed Matter PhysicsCondensation reactionPhosphate540Amorphous calcium carbonate0104 chemical sciences3. Good healthAmorphous solidCalcium carbonatechemistryChemical engineering13. Climate actionddc:540Carbonate[SDU.STU.MI]Sciences of the Universe [physics]/Earth Sciences/Mineralogy
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Synthesis of Bulk FeAl nanostructured materials by HVOF spray forming and Spark Plasma Sintering

2006

[PHYS.MECA.MEMA]Physics [physics]/Mechanics [physics]/Mechanics of materials [physics.class-ph][CHIM.MATE] Chemical Sciences/Material chemistry[PHYS.MECA.MEMA] Physics [physics]/Mechanics [physics]/Mechanics of materials [physics.class-ph][ CHIM.MATE ] Chemical Sciences/Material chemistry[SPI.MECA.MEMA]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanics of materials [physics.class-ph][PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci][CHIM.CRIS]Chemical Sciences/Cristallography[CHIM.MATE]Chemical Sciences/Material chemistry[CHIM.CRIS] Chemical Sciences/Cristallography[PHYS.COND.CM-MS] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci][SPI.MECA.MEMA] Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanics of materials [physics.class-ph]
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Coordination Chemistry of a Bis(Tetrazine) Tweezer: A Case of Host-Guest Behavior with Silver Salts

2021

The carbon-carbon cross-coupling of phenyl s-tetrazine (Tz) units at their ortho-phenyl positions allows the formation of constrained bis(tetrazines) with original tweezer structures. In these compounds, the face-to-face positioning of the central tetrazine cores is reinforced by π-stacking of the electron-poor nitrogen-containing heteroaromatic moieties. The resulting tetra-aromatic structure can be used as a weak coordinating ligand with cationic silver. This coordination generates a set of bis(tetrazine)-silver(I) coordination complexes tolerating a large variety of counter anions of various geometries, namely, PF6−, BF4−, SbF6−, ClO4−, NTf2−, and OTf−. These compounds were characterized…

analytical_chemistrycoordinationAbsorption spectroscopyPharmaceutical ScienceCrystal structure010402 general chemistryElectrochemistryligand01 natural sciencesArticleXRD structureAnalytical ChemistryCoordination complexTetrazinechemistry.chemical_compoundQD241-441bis(tetrazine)Drug Discovery[CHIM.CRIS]Chemical Sciences/Cristallography[CHIM.COOR]Chemical Sciences/Coordination chemistrysilverPhysical and Theoretical Chemistryhost-guestchemistry.chemical_classification010405 organic chemistryLigandOrganic ChemistryCationic polymerization0104 chemical sciencesCrystallographychemistryChemistry (miscellaneous)Molecular MedicineStoichiometryMolecules
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High oxidation state aqueous organometallics. Formation and structure of an oxo-centred Cp*MoV trinuclear cation by chemical reduction of Cp*2Mo2O5

2002

International audience; Reduction of Cp*2Mo2O5 by zinc/CF3CO2H in MeOH–H2O yields a salt which is composed of [Cp*3Mo3O4(O2CCF3)3]+ and [Zn2(O2CCF3)6]2− ions after crystallisation from THF–Et2O.

chemistry.chemical_classificationAqueous solution010405 organic chemistryInorganic chemistrySalt (chemistry)chemistry.chemical_elementGeneral ChemistryZinc010402 general chemistry01 natural sciencesMedicinal chemistry0104 chemical sciencesIonlaw.inventionchemistryOxidation statelaw[CHIM.CRIS]Chemical Sciences/CristallographyChemical reduction[CHIM.COOR]Chemical Sciences/Coordination chemistryCrystallizationJournal of the Chemical Society, Dalton Transactions
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Bromide hydrogen oxalate salts with the diprotonated 1,4-diazabicyclo[2.2.2]octane counterion

2020

Abstract Two new salts composed of the diprotonated 1,4-diazabicyclo[2.2.2]octane (DABCO) molecule as the cations and bromide and hydrogen oxalate as the anions have been isolated and structurally characterized by X-ray diffraction analysis. The salt [DABCOH2]{[HC2O4][Br]} (1) crystallizes in the orthorhombic system, space group P212121 with a = 9.0809(7), b = 9.5156(7), c = 12.3558(9) Å, V = 1067.67(14) Å3 and Z = 4. The salt [DABCOH2]2{[HC2O4][Br]3}·H2O (2) crystallizes in the orthorhombic system, space group Pnma with a = 26.6554(17), b = 7.3711(4), c = 10.7421(7) Å, V = 2110.6(2) Å3 and Z = 4. The compounds were prepared from ethanolic solutions of [DABCOH2][HC2O4]2 (L 1 ) and ZnBr2 in …

chemistry.chemical_classificationHydrogenHydrogen bondchemistry.chemical_element02 engineering and technologyGeneral ChemistryDABCO010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesMedicinal chemistryOxalate0104 chemical scienceschemistry.chemical_compoundchemistryBromide[CHIM.CRIS]Chemical Sciences/Cristallography[CHIM]Chemical SciencesCounterion0210 nano-technologyOctane
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Functionalization of Bambusurils by a Thiol-Ene Click Reaction and a Facile Method for the Preparation of Anion-Free Bambus[6]urils

2018

Sulfide-functionalized bambus[4]urils ((RS)8 BU[4]) and bambus[6]urils ((RS)12 BU[6]) were synthesized through thiol-ene click coupling reactions (TEC) of allylbambus[n]urils. Thiosugars were grafted to BU[4] and BU[6]. Synthesis of BU[6] derivatives always requires the use of a template anion (iodide, chloride, or bromide), which is enclosed in the cavity of BU[6]. We show that this anion influences the reactivity of bambus[6]urils. An encapsulated iodide makes allyl functions of allyl12 BU[6] less reactive towards TEC and hydrogenation reactions in comparison to the corresponding chloride or bromide inclusion complexes. This is critical for the chemical reactivity of BU[6] and even more t…

chemistry.chemical_classification[CHIM.ORGA]Chemical Sciences/Organic chemistry010405 organic chemistryOrganic ChemistryIodideGeneral ChemistryNuclear magnetic resonance spectroscopy010402 general chemistry01 natural sciencesMedicinal chemistryQuantum chemistryCatalysisCoupling reaction0104 chemical sciences[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistrychemistry.chemical_compoundchemistryBromide[CHIM.CRIS]Chemical Sciences/CristallographyClick chemistryReactivity (chemistry)Ene reactionChemistry - A European Journal
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Propane-1,3-diammonium molybdate

2019

The reaction between equimolar amounts of propane-1,3-diamine and molybdenum trioxide in water led to the formation of single crystals of the title salt, (C3H12N2)[MoO4]. The asymmetric unit is comprised of one propane-1,3-diammonium cation and one molybdate anion. The latter is isolated in the structure and has a slightly distorted tetrahedral configuration. An extensive network of N—H...O hydrogen bonds connects anions and cations, giving rise to a compact three-dimensional packing.

chemistry.chemical_classificationcrystal structure010405 organic chemistryHydrogen bondSalt (chemistry)General MedicineCrystal structureMolybdate010402 general chemistry01 natural sciences0104 chemical sciencesIonMolybdenum trioxidechemistry.chemical_compoundCrystallographychemistryPropanemolybdate saltpropane-13-diammoniumhydrogen bondslcsh:QD901-999[CHIM.CRIS]Chemical Sciences/Cristallography[CHIM]Chemical Scienceslcsh:CrystallographyComputingMilieux_MISCELLANEOUS
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Organotin(IV) selenate derivatives – Crystal structure of [{(Ph 3 Sn) 2 SeO 4 } ⋅ CH 3 OH] n

2021

Abstract Crystallization of [(Ph3Sn)2SeO4] ⋅ 1.5H2O in methanol leads to the formation of [{(Ph3Sn)2SeO4} ⋅ CH3OH] n (1) which constitutes a new specimen of organotin(IV) selenate derivatives. In the solid state, complex 1 is arranged in polymeric zig-zag chains, composed of alternating Ph3Sn and SeO4 groups. In addition, pendant Ph3Sn ⋅ CH3OH moieties are branched along chains according to a syndiotactic organization and via Sn-O-Se connections. From a supramolecular point of view, intermolecular hydrogen bonds established between the selenate groups (uncoordinated oxygen) and the hydroxyl functions (CH3OH) of the pendant groups link the chains together.

crystal structure010405 organic chemistryMetals and AlloysGeneral ChemistryCrystal structureorganotin(iv)010402 general chemistryCondensed Matter Physics01 natural sciencesSelenate3. Good health0104 chemical scienceschemistry.chemical_compoundCrystallographyChemistrychemistryMaterials Chemistryinorganic chain[CHIM.CRIS]Chemical Sciences/Cristallography[CHIM]Chemical Sciences[CHIM.COOR]Chemical Sciences/Coordination chemistryseleniumsn-o-se moietyQD1-999
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Crystal structure of the diglycidyl ether of eugenol

2017

The diep­oxy monomer (DGE-Eu) was synthesized from eugenol by a three-step reaction. It consists of a 1,2,4-tris­ubstituted benzene ring substituted by diglycidyl ether, a meth­oxy group and a methyl­oxirane group. The three-membered oxirane rings are inclined to the benzene ring by 61.0 (3) and 27.9 (3)°. In the crystal, mol­ecules are linked by C—H⋯O hydrogen bonds, forming layers parallel to the ab plane.

crystal structureDiglycidyl etherEpoxideep­oxy thermoset prepolymer02 engineering and technologyCrystal structure010402 general chemistryRing (chemistry)01 natural scienceseugenol derivativeResearch CommunicationsCrystalchemistry.chemical_compound[ CHIM.CRIS ] Chemical Sciences/CristallographyPolymer chemistry[CHIM.CRIS]Chemical Sciences/Cristallography[CHIM]Chemical SciencesGeneral Materials Science[CHIM.CRIS] Chemical Sciences/CristallographyBenzeneComputingMilieux_MISCELLANEOUSbio-based mol­eculebio-based moleculeCrystallographyHydrogen bondGeneral Chemistry[PHYS.MECA]Physics [physics]/Mechanics [physics]021001 nanoscience & nanotechnologyCondensed Matter Physicshydrogen bonding3. Good health0104 chemical sciencesCrystallographyMonomerchemistryQD901-999oxiraneepoxy thermoset prepolymer[PHYS.MECA] Physics [physics]/Mechanics [physics]0210 nano-technology
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