Search results for "π"

showing 10 items of 67 documents

Crystal structure of bis[μ-1,4-bis(diphenylphosphanyl)butane-κ2P:P′]bis[(3,4,7,8-tetramethyl-1,10-phenanthroline-κ2N,N′)copper(I)] bis(hexafluoridoph…

2016

The dication of the title compound, [Cu2(C28H28P2)2(C16H16N2)2](PF6)2·2CH2Cl2, has crystallographically imposed inversion symmetry. The copper(I) cation is coordinated in a distorted tetrahedral geometry by two N atoms of a chelating 3,4,7,8-tetramethyl-1,10-phenanthroline ligand and two P atoms of two bridging 1,4-bis(diphenylphosphanyl)butane ligands, forming a 14-membered ring. An intramolecular π–π interaction stabilizes the conformation of the dication. In the crystal, dications are linked by π–π interactions involving adjacent phenanthroline rings, forming chains running parallel to [111]. Weak C—H...F hydrogen interactions are also observed.

crystal structureStereochemistryPhenanthrolinediiminecopper(I) complexesCrystal structure010402 general chemistry010403 inorganic & nuclear chemistry01 natural sciencesMedicinal chemistrylcsh:Chemistrychemistry.chemical_compoundDiphosphinesGeneral Materials ScienceDiimineChemistryLigandButaneGeneral ChemistryCondensed Matter PhysicsHEXA0104 chemical sciencesDicationlcsh:QD1-999π–π interactionsdiphosphinesActa Crystallographica Section E: Crystallographic Communications
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Crystal structure of N′′-benzyl-N′′-[3-(benzyldimethylazaniumyl)propyl]-N,N,N′,N′-tetramethylguanidinium bis(tetraphenylborate)

2015

In the crystal structure of the title salt, C24H38N42+·2C24H20B−, the C—N bond lengths in the central CN3unit of the guanidinium ion are 1.3364 (13), 1.3407 (13) and 1.3539 (13) Å, indicating partial double-bond character. The central C atom is bonded to the three N atoms in a nearly ideal trigonal–planar geometry and the positive charge is delocalized in the CN3plane. The bonds between the N atoms and the terminal methyl groups of the guanidinium moiety and the four C—N bonds to the central N atom of the (benzyldimethylazaniumyl)propyl group have single-bond character. In the crystal, C—H...π interactions between the guanidinium H atoms and the phenyl C atoms of the tetraphenylborate ions …

crystal structureTetraphenylboratebiologyChemistryGeneral ChemistryCrystal structureCondensed Matter Physicsbiology.organism_classificationC—H⋯π inter­actionstetraphenylborateData ReportsIonCrystalBond lengthlcsh:ChemistryDelocalized electronCrystallographychemistry.chemical_compoundguanidinium saltC—H...π interactionslcsh:QD1-999tetra­phenyl­borateMoietyTetraGeneral Materials ScienceActa Crystallographica Section E: Crystallographic Communications
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Crystal structure of 2-hy­droxy­imino-2-(pyridin-2-yl)-N'-[1-(pyridin-2-yl)ethyl­idene]acetohydrazide

2014

The mol­ecule of the title compound is approximately planar with the planes of the two pyridine rings inclined to one another by 5.51 (7)°. In the crystal, mol­ecules are linked by bifurcated O—H⋯(O,N) hydrogen bonds, forming inversion dimers, which are in turn linked via C—H⋯O and C—H⋯N hydrogen bonds, forming sheets lying parallel to (502).

crystal structureacetohydrazidehy­droxy­iminoStackingpyridylethylideneCrystal structureRing (chemistry)Research CommunicationsCrystalchemistry.chemical_compoundAmideπ–π stacking interactionsPyridineGeneral Materials Scienceta116CrystallographyChemistryHydrogen bondGeneral ChemistryCondensed Matter PhysicsOximehydrogen bondingCrystallographyQD901-999π–π stacking inter­actionshydroxyiminopyridyl­ethyl­ideneActa Crystallographica Section E : Structure Reports Online
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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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2-(3-Methyl-2-oxo-1,2-dihydroquinoxalin-1-yl)acetic acid dihydrate

2018

In the title compound, C11H10N2O3·2H2O, the constituent atoms of the dihydroquinoxaline moiety deviate from the mean plane of the unit by +0.0572 (8) to −0.0874 (8) Å while the acetic acid substituent is nearly orthogonal to this plane. The crystal packing consists of corrugated layers constructed by O—H...O, O—H...N and C—H...O hydrogen bonds, which also involve the lattice water molecules. O—H...O hydrogen bonds and π–π stacking interactions hold these layers together.

crystal structurehydrogen bondChemistryHydrogen bondStackingSubstituentGeneral MedicineCrystal structure010402 general chemistry010403 inorganic & nuclear chemistry01 natural sciences0104 chemical scienceschemistry.chemical_compoundAcetic acidCrystallographydihydroquinoxalinelcsh:QD901-999Moietylcsh:Crystallographyπ–π stackingIUCrData
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Haptotropism in a Nickel Complex with a Neutral, π‐Bridging cyclo‐P4 Ligand Analogous to Cyclobutadiene

2022

The reaction of ( 1 )Ni(η 2 -cod), 2 , incorporating a chelating bis( N -heterocyclic carbene) 1 , with P 4 in pentane yielded the dinuclear complex [( 2 )Ni] 2 (μ 2 ,η 2 :η 2 -P 4 ), 3 , formally featuring a cyclobutadiene-like, neutral, rectangular, π-bridging P 4 -ring. In toluene, the butterfly-shaped complex [( 1 )Ni] 2 (μ 2 ,η 2 :η 2 -P 2 ), 4 , with a formally neutral P 2 -unit was obtained from 2 and either P 4 or 3 . Computational studies showed that a low energy barrier haptotropic rearrangement involving two isomers of the μ 2 ,η 2 :η 2 -P 4 coordination mode and a low energy μ 2 ,η 4 :η 4 -P 4 coordination mode, as previously predicted for related nickel cyclobutadiene complexes…

nickelkompleksiyhdisteetphosphorushaptotropismnikkeliN-heterocyclic carbenefosforiπ-ligands
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Wpływ podstawienia karbazolu pierścieniem fulwenowym na ich strukturę elektronową

2019

Na właściwości optoelektroniczne układów organicznych, w znacznym stopniu ma wpływ ich struktura elektronowa. Poznanie zatem czynników determinujących ich strukturę elektronową stanowi istotny punkt wyjścia w badaniach nad możliwościami potencjalnego ich zastosowania. Wśród wielu narzędzi, którymi można modyfikować π-elektronową delokalizację w układach aromatycznych jest efekt podstawnikowy. Rolę podstawników mogą również pełnić układy cykliczne a w szczególności te, które nie spełniają reguły Hückla, gdyż ich dążność do stanu aromatycznego, jest czynnikiem generującym ruch elektronów π w strukturach. Przykładem takiego pierścienia może być fulwen, który posiada 5 elektronów π i w miarę mo…

struktura π-elektronowaefekt podstawnikowyilościowe indeksy aromatycznościpochodne karbazoluprzerwa energetyczna pomiędzy orbitalami HOMO-LUMO
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Rola efektu podstawnikowego w sprzężeniu π-elektronowym w N-podstawionym karbazolu

2019

Modyfikacja właściwości optoelektronowych materiałów organicznych w wielu przypadkach sprowadza się do wywołania zmian w ich strukturze elektronowej, a w szczególności w π-elektronowej delokalizacji w obrębie całej molekuły. Dużą uwagę zajmują w tych badaniach układy skondensowane zawierające pierścienie aromatyczne, niearomatyczne oraz hetero atomy. Do układów tych można zaliczyć, między innymi, karbazol i jego pochodne, który znajduje zastosowanie w organicznych materiałach optycznych i elektronowych. W niniejszej publikacji zaprezentowano wyniki z przeprowadzonych badań nad wpływem podstawienia pierścienia fulwenowego na atomie azotu oraz podstawników o zróżnicowanym charakterze elektron…

struktura π-elektronowanowe materiały optoelektroniczne na bazie związków organicznychilościowe indeksy aromatycznościpochodne karbazoluprzerwa energetyczna pomiędzy orbitalami HOMO-LUMO
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Crystal structure of bis(μ2-methanolato-κO:κO)hexamethylbis(μ2-triphenylacetato-κO:κO′)bis(μ2-triphenylacetato-κ2O,O′:κO)dialuminiumdilanthanum tolue…

2018

The complex [{La(Ph3CCOO)2(Me3AlOMe)}2] has an La2(μ-OCO)4 core, contains the carboxyl­ate ligands in μ2-κ1 O:κ1 O′ bridging and μ2-κ2 O,O′:κ1 O semi-bridging coordination modes, and displays La—C inter­actions with the π-system of a phenyl ring.

triphenylacetatelcsh:Chemistrycrystal structurelanthanumlcsh:QD1-999aluminiumtri­phenyl­acetateπ-complexResearch Communicationscoordination compoundActa Crystallographica Section E: Crystallographic Communications
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Hydrothermal methane fluxes from the soil at Lakki plain (Nisyros Island, Greece)

2013

Μετρήσεις φυσικής ροής μεθανίου και διοξειδίου του άνθρακα από το έδαφος πραγματοποιήθηκαν με τη μέθοδο συγκέντρωσης θαλάμου στην περιοχή Λακκί της Καλδέρας της Νισύρου, καλύπτοντας έκταση περίπου 0.06 km2 συμπεριλαμβάνοντας τις περιοχές Καμινάκια, Στέφανος και Αλέξανδρο όπου παρατηρείται έντονη ατμιδική δραστηριότητας. Οι τιμές ροής που μετρήθηκαν σε 77 σημεία κυμαίνονται από –3.4 μέχρι 1420 mg m-2 d-1 για το CH4 και από 0.1, μέχρι 383 g m-2 d-1 για το CO2. Στις τρεις ατμιδικές περιοχές παρουσιάζονται διαφορετικοί ρυθμοί διαφυγής μεθανίου, ιδίως στα Καμινάκια όπου προέκυψαν οι μεγαλύτερες τιμές ροής. Η εξερχόμενη ποσότητα μεθανίου εκτιμάται σε 0.01 t a-1 από μια έκταση περίπου 2500 m2 στον…

Διαφυγή μεθανίουΘάλαμος συγκέντρωσης010501 environmental sciences010502 geochemistry & geophysics01 natural sciencesMedicinal chemistryHydrothermal systemsMethane outputAccumulation chamberMaterials ChemistryΑπαέρωση εδάφουςSoil degassingΥδροθερμικά συστήματαGeomorphologyGeology0105 earth and related environmental sciencesΔελτίο της Ελληνικής Γεωλογικής Εταιρείας
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