Search results for " hydrogen"

showing 10 items of 319 documents

Crystal structure and Hirshfeld surface analysis of (E)-3-[(4-fluorobenzylidene)amino]-5-phenylthiazolidin-2-iminium bromide

2019

TARAMAPUBMED TARAMASCOPUS TARAMAWOS In the cation of the title salt, C16H15FN3S+·Br−, the phenyl ring is disordered over two sets of sites with a refined occupancy ratio of 0.503 (4):0.497 (4). The mean plane of the thia­zolidine ring makes dihedral angles of 13.51 (14), 48.6 (3) and 76.5 (3)° with the fluoro­phenyl ring and the major- and minor-disorder components of the phenyl ring, respectively. The central thia­zolidine ring adopts an envelope conformation. In the crystal, centrosymmetrically related cations and anions are linked into dimeric units via N—H...Br hydrogen bonds, which are further connected by weak C—H...Br hydrogen bonds into chains parallel to [110]. Hirshfeld surface an…

crystal structureStackingCrystal structure010402 general chemistryRing (chemistry)01 natural sciencesCrystalHirshfeld surface analysis.chemistry.chemical_compoundBromideThia­zolidine ringcharge assisted hydrogen bondingHirshfeld surface analysisGeneral Materials ScienceBenzeneCrystallography010405 organic chemistryHydrogen bondIminiumdisorderGeneral ChemistryCondensed Matter::Mesoscopic Systems and Quantum Hall EffectCondensed Matter Physics0104 chemical sciencesCrystallographychemistryQD901-999thiazolidine ringActa Crystallographica Section E Crystallographic Communications
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Crystal structure of bis(cyclohexylammonium) diphenyldioxalatostannate(IV)

2015

In the title salt, (CyNH3)2[Sn(Ph2)(C2O4)2] (Cy is cyclo­hexyl and Ph is phen­yl), the SnPh2 moiety is chelated by two oxalate anions, leading to a cis arrangement within the distorted octa­hedral coordination sphere of the SnIV atom.

crystal structureStereochemistryOxalic acidcyclo­hexyl­ammoniumorganotin(IV) compoundSalt (chemistry)Crystal structureMedicinal chemistryOxalateResearch CommunicationsCrystalchemistry.chemical_compoundMoietyGeneral Materials ScienceCoordination geometrychemistry.chemical_classificationCrystallographycis arrangementHydrogen bondoxalate ligandsGeneral ChemistryCondensed Matter PhysicschemistryQD901-999N—H...O hydrogen bondingN—H⋯O hydrogen bondingcyclohexylammoniumActa Crystallographica Section E: Crystallographic Communications
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Three phenanthroline-metal complexes with topologically similar but geometrically different conformations.

2016

Two out of the three very similar complexes described present twofold symmetry but not the third one, probably by way of a strong intra­molecular C—H⋯O hydrogen bond disrupting the symmetry, a fact which is analysed in detail.

crystal structureStereochemistryPhenanthrolinechemistry.chemical_elementZincCrystal structureQuímica Inorgánica y Nuclear010402 general chemistry010403 inorganic & nuclear chemistry01 natural sciencesstrong C—H⋯O intra­molecular hydrogen bondsCRYSTAL STRUCTUREResearch Communicationslcsh:ChemistryMetalBase (group theory)//purl.org/becyt/ford/1 [https]chemistry.chemical_compoundGroup (periodic table)strong C—H...O intramolecular hydrogen bondsCd and Zn complexesPEROXODISULFATE ANION//purl.org/becyt/ford/1.4 [https]General Materials ScienceSTRONG C - H⋯O INTRAMOLECULAR HYDROGEN BONDSCadmiumHydrogen bondCiencias QuímicasGeneral ChemistryCondensed Matter Physicsperoxodisulfate anion0104 chemical sciencesCrystallographylcsh:QD1-999chemistryvisual_artvisual_art.visual_art_mediumperoxodi­sulfate anionCD AND ZN COMPLEXESCIENCIAS NATURALES Y EXACTASActa crystallographica. Section E, Crystallographic communications
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1,1′-[(2,3,5,6-Tetramethyl-1,4-phenylene)bis(methylene)]dipiperidine

2018

The asymmetric unit of the title compound, C22H36N2, comprises one half-molecule, the other half being generated by a center of inversion. The piperidine ring adopts a chair conformation, with the exocyclic N—C bond in an equatorial orientation. A short intramolecular C—H...N hydrogen bond occurs and forms an S(6) motif. No directional interactions beyond van der Waals contacts are observed between the molecules, which form a wave-like supramolecular architecture.

crystal structurebiologyHydrogen bondpiperidine-substituted dureneCyclohexane conformationCrystal structure010402 general chemistry010403 inorganic & nuclear chemistrybiology.organism_classificationRing (chemistry)01 natural sciencesMedicinal chemistry0104 chemical sciencesintramolecular C—H...N hydrogen bondsymbols.namesakechemistry.chemical_compoundchemistrysymbolslcsh:QD901-999TetraPiperidinelcsh:Crystallographyvan der Waals forceEne reactionIUCrData
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Crystal structure of chlorido(2-{[2-(4-chlorophenyl)hydrazin-1-ylidene-κN1](phenyl)methyl}pyridine-κN)(η5-pentamethylcyclopentadienyl)iridium(III) te…

2015

The title compound, [Ir(η5-C5Me5)Cl(C18H14ClN3)]B(C6H5)4, is chiral at the metal center and crystallizes as a racemate. In the cation, the hydrazinylidenepyridine ligand isN,N-coordinated through theN-pyridyl andN-hydrazinylidene groups forming a five-membered metallacycle. An intramolecular C—H...Cl hydrogen bond is observed. In the crystal, centrosymmetrically-related cations are connected by C—Cl...π interactions, forming a dimeric structure. The crystal packing is further stabilized by weak interionic C—H...π interactions.

crystal structurechemistry.chemical_elementNanotechnologyCrystal structureC—H⋯π inter­actionsintramolecular C—H...Cl hydrogen bondMedicinal chemistryhydrazinyl­idene­pyridine ligandpenta­methyl­cyclo­penta­dien­ylMetallcsh:Chemistrychemistry.chemical_compoundC—H...π interactionsPyridineGeneral Materials SciencepentamethylcyclopentadienylIridiumC—Cl...π interactionsbiologyLigandHydrogen bondintra­molecular C—H⋯Cl hydrogen bondiridium(III) complexGeneral ChemistryMetallacycleCondensed Matter Physicsbiology.organism_classificationData Reportshydrazinylidenepyridine ligandchemistrylcsh:QD1-999visual_artC—Cl⋯π inter­actionsvisual_art.visual_art_mediumTetraActa Crystallographica Section E: Crystallographic Communications
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Crystal structure of 2-methyl-1H-imidazol-3-ium hydrogen oxalate dihydrate

2016

In the title mol­ecular salt 2-methyl-1H-imidazol-3-ium hydrogen oxalate dihydrate, N—H⋯(O,O) and O—H⋯O hydrogen bonds link the components into a bilayer-like assembly.

crystal structurecrystal structure organic salt monosubstituted imidazolium hydrogen oxalate hydrogen bonds monohydrateHydrogenOxalic acidInorganic chemistrychemistry.chemical_elementSalt (chemistry)Crystal structuremonosubstituted imidazolium010402 general chemistry010403 inorganic & nuclear chemistry[ CHIM ] Chemical Sciences01 natural sciencesOxalateResearch Communicationslaw.inventionCrystalchemistry.chemical_compoundlawmonohydrate[CHIM.CRIS]Chemical Sciences/Cristallography[CHIM]Chemical SciencesGeneral Materials ScienceCrystallizationComputingMilieux_MISCELLANEOUSchemistry.chemical_classificationCrystallographyHydrogen bondGeneral ChemistryCondensed Matter Physics0104 chemical sciences3. Good healthCrystallographychemistryQD901-999hydrogen bondsorganic salthydrogen oxalateActa Crystallographica Section E Crystallographic Communications
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Crystal structure of (E)-2-(tert-butyl­amino)-4-(tert-butyl­imino)­naphthalen-1(4H)-one

2018

The title compound is the first example of a naphtho­quinone imine derivative crystallizing in the 4-imine/2-amine tautomeric form having bulky tert-butyl substituents at the N atoms.

crystal structureintra­molecular hydrogen bondingIminenaphthoquinoneCrystal structure010402 general chemistry01 natural sciencesMedicinal chemistryResearch Communicationslcsh:Chemistrychemistry.chemical_compoundsymbols.namesakeGeneral Materials ScienceIntra­molecular hydrogen bondingAlkylchemistry.chemical_classificationintramolecular hydrogen bonding010405 organic chemistryHydrogen bondCrystal structurenaphtho­quinoneGeneral ChemistryCondensed Matter PhysicsTautomer0104 chemical scienceslcsh:QD1-999chemistryNaphtho­quinonesymbols540 QuímicaAmine gas treatingN—H...O hydrogen bondingvan der Waals forceDerivative (chemistry)N—H⋯O hydrogen bondingActa Crystallographica Section E: Crystallographic Communications
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Experimental tests on hydrogen production from seawaves energy

2017

In this paper we propose the use of Wave Energy Converter and saline water to produce hydrogen. Two different scheme and technology are proposed. The objective of this research is to design an electrolyzing system capable of utilizing sea. In particular, we present the results obtained by two different prototype of electrolyzer: one with steel electrodes and the second with titanium electrodes. Further experiments were carried out by changing the electrolytic solution of water and sodium chloride in real seawater. Finally, the electrical load has been changed as imposing electric current with a distorted waveform. © 2017 Marine Technology Society.

electrolysis hydrogen new fuel sea waterSettore ING-IND/32 - Convertitori Macchine E Azionamenti Elettrici
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Crystal structures of allyltriphenyl-phosphonium halogenocuprates(I)

2013

Alternating-current electrochemical synthesis is used to obtain for the first time halogenocuprates of an allyl derivative of phosphonium of the composition (CH2=CHCH2(C6H5)3P)CuX2 (X = Br (I), Cl (II)). Compound I crystallizes in the space group P21, a = 9.6341(3) A, b = 12.4167(4) A, c = 9.9618(4) A, β = 117.484(5)°, Z = 2. Compound II crystallizes in the space group P21/n, a = 9.9725(5) A, b = 15.4586(8) A, c = 13.7557(5) A, β = 90.429(4)°, Z = 4. In the structures of I and II quasilinear CuX 2 − anions are held by C-H…X hydrogen bonds inside a framework formed by the stacking of phenyl groups from CH2=CHCH2(C6P5)3P+ cations. Allyl groups are not involved in coordination with copper(I) a…

embracecrystal structurehyperconjugationphenylStereochemistryHydrogen bondStackingchemistry.chemical_elementCrystal structureHyperconjugationElectrochemistryhomoconjugationCoppercopper(I)weak hydrogen bondsInorganic Chemistrychemistry.chemical_compoundCrystallographychemistrystackingallyl phosphoniumMaterials ChemistryPhosphoniumPhysical and Theoretical ChemistryDerivative (chemistry)Journal of Structural Chemistry
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Biogas Pollution and Mineral Deposits Formed on the Elements of Landfill Gas Engines

2022

Municipal landfills generate a significant amount of high-energy biogas, which can be used as a renewable gaseous fuel. However, it is necessary to improve the quality of this biogas due to the presence of various chemical compounds. The most common pollutants in landfill biogas include volatile compounds of silicon, sulphur, phosphorus and chlorine. The aforementioned elements, as well as other metals, were found both in the deposits and in the engine oil. The paper presents detailed characteristics of the solid residues formed in selected parts of gas engines powered by landfill biogas. Its elemental composition and morphology were investigated in order to determine the structure and infl…

engine depositssiloxanelandfill biogas; engine deposits; siloxane; hydrogen sulphide; lubricant pollutionlubricant pollutionGeneral Materials Sciencelandfill biogashydrogen sulphideMaterials
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