0000000001302659

AUTHOR

Jesús Cerdá

showing 37 related works from this author

Improving the Robustness of Organic Semiconductors through Hydrogen Bonding

2021

Molecular organization plays an essential role in organic semiconductors since it determines the extent of intermolecular interactions that govern the charge transport present in all electronic applications. The benefits of hydrogen bond-directed self-assembly on charge transport properties are demonstrated by comparing two analogous pyrrole-based, fused heptacyclic molecules. The rationally designed synthesis of these materials allows for inducing or preventing hydrogen bonding. Strategically located hydrogen bond donor and acceptor sites control the solid-state arrangement, favoring the supramolecular expansion of the π-conjugated surface and the subsequent π-stacking as proved by X-ray d…

Organic electronicsMaterials scienceHydrogenHydrogen bondIntermolecular forceSupramolecular chemistrychemistry.chemical_element02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesAcceptor0104 chemical sciencesOrganic semiconductorchemistryChemical physicsMoleculeGeneral Materials Science0210 nano-technologyACS Applied Materials & Interfaces
researchProduct

Electrical two-qubit gates within a pair of clock-qubit magnetic molecules

2022

Enhanced coherence in HoW$_{10}$ molecular spin qubits has been demonstrated by use of Clock Transitions (CTs). More recently it was shown that, while operating at the CTs, it was possible to use an electrical field to selectively address HoW$_{10}$ molecules pointing in a given direction, within a crystal that contains two kinds of identical but inversion-related molecules. Herein we theoretically explore the possibility of employing the electric field to effect entangling two-qubit quantum gates among two neighbouring CT-protected HoW$_{10}$ qubits within a diluted crystal. We estimate the thermal evolution of $T_1$, $T_2$, find that CTs are also optimal operating points from the point of…

Quantum PhysicsCondensed Matter - Mesoscale and Nanoscale PhysicsComputational Theory and MathematicsComputer Networks and CommunicationsMesoscale and Nanoscale Physics (cond-mat.mes-hall)Computer Science (miscellaneous)FOS: Physical sciencesStatistical and Nonlinear PhysicsQuímicaQuantum PhysicsQuantum Physics (quant-ph)npj Quantum Information
researchProduct

Synergy of Axial and Point Chirality to Construct Helical N -Heterotriangulene-Based Supramolecular Polymers

2018

chemistry.chemical_classificationAtropisomerMaterials science010405 organic chemistryRenewable Energy Sustainability and the EnvironmentEnergy Engineering and Power TechnologyCooperativity010402 general chemistry01 natural sciencesHelicity0104 chemical sciencesBiomaterialsSupramolecular polymerschemistryChemical physicsMaterials ChemistryPoint (geometry)Chirality (chemistry)ChemNanoMat
researchProduct

Regioisomerism in cationic sulfonyl-substituted [Ir(C^N)2(N^N)]+ complexes: its influence on photophysical properties and LEC performance

2016

A series of regioisomeric cationic iridium complexes of the type [Ir(C^N)2(bpy)][PF6] (bpy = 2,2'-bipyridine) is reported. The complexes contain 2-phenylpyridine-based cyclometallating ligands with a methylsulfonyl group in either the 3-, 4- or 5-position of the phenyl ring. All the complexes have been fully characterized, including their crystal structures. In acetonitrile solution, all the compounds are green emitters with emission maxima between 493 and 517 nm. Whereas substitution meta to the Ir-C bond leads to vibrationally structured emission profiles and photoluminescence quantum yields of 74 and 77%, placing a sulfone substituent in a para position results in a broad, featureless em…

Sulfonylchemistry.chemical_classificationPhotoluminescenceChemistrySubstituentQuantum yieldchemistry.chemical_element02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyPhotochemistry01 natural sciences0104 chemical sciencesSulfoneInorganic Chemistrychemistry.chemical_compoundCrystallographyDensity functional theoryIridiumTriplet state0210 nano-technologyDalton Transactions
researchProduct

Colour tuning by the ring roundabout: [Ir(C^N)2(N^N)]+ emitters with sulfonyl-substituted cyclometallating ligands

2015

A series of cationic bis-cyclometallated iridium(III) complexes [Ir(C^N)2(N^N)]+ is reported. Cyclometallating C^N ligands are based on 2-phenylpyridine with electron-withdrawing sulfone substituents in the phenyl ring: 2-(4-methylsulfonylphenyl)pyridine (H1) and 2-(3-methylsulfonylphenyl)pyridine (H2). 2-(1H-Pyrazol-1-yl)pyridine (pzpy) and 2-(3,5-dimethyl-1H-pyrazol-1-yl)pyridine (dmpzpy) are used as electron-rich ancillary N^N ligands. The complexes have been fully characterized and the single crystal structure of [Ir(2)2(dmpzpy)][PF6]·MeCN has been determined. Depending on the position of the methylsulfonyl group, the complexes are green or blue emitters with vibrationally structured em…

Sulfonylchemistry.chemical_classificationGeneral Chemical Engineeringchemistry.chemical_element02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyRing (chemistry)Photochemistry01 natural sciences0104 chemical sciencesSulfoneCrystallographychemistry.chemical_compoundchemistryPyridineDensity functional theoryIridiumTriplet state0210 nano-technologySingle crystalRSC Advances
researchProduct

Conformational Isomerism: Influence of the Z / E Isomerism on the Pathway Complexity of a Squaramide‐Based Macrocycle (Small 7/2021)

2021

BiomaterialsSupramolecular polymerschemistry.chemical_classificationChemistryStereochemistryHydrogen bondSquaramideGeneral Materials ScienceGeneral ChemistryConformational isomerismBiotechnologySmall
researchProduct

In Silico Molecular Engineering of Dysprosocenium-Based Complexes to Decouple Spin Energy Levels from Molecular Vibrations

2019

Molecular nanomagnets hold great promise for spintronics and quantum technologies, provided that their spin memory can be preserved above liquid-nitrogen temperatures. In the past few years, the magnetic hysteresis records observed for two related dysprosocenium-type complexes have highlighted the potential of molecular engineering to decouple vibrational excitations from spin states and thereby enhance magnetic memory. Herein, we study the spin-vibrational coupling in [(CpiPr5)Dy(Cp*)]+ (CpiPr5 = pentaisopropylcyclopentadienyl, Cp* = pentamethylcyclopentadienyl), which currently holds the hysteresis record (80 K), by means of a computationally affordable methodology that combines first-pri…

PhysicsLigand field theorySpin statesSpintronics010405 organic chemistryUNESCO::QUÍMICAElectronic structure010402 general chemistryMagnetic hysteresis01 natural sciences:QUÍMICA [UNESCO]0104 chemical sciencesMolecular engineeringChemical physicsAb initio quantum chemistry methodsGeneral Materials SciencePhysical and Theoretical ChemistrySpin-½
researchProduct

Shine bright or live long: substituent effects in [Cu(N^N)(P^P)]+-based light-emitting electrochemical cells where N^N is a 6-substituted 2,2'-bipyri…

2016

We report [Cu(P^P)(N^N)][PF6] complexes with P^P = bis(2-(diphenylphosphino)phenyl)ether (POP) or 4,5-bis(diphenylphosphino)-9,9-dimethylxanthene (xantphos) and N^N = 6-methyl-2,2′-bipyridine (Mebpy), 6-ethyl-2,2′-bipyridine (Etbpy), 6,6′-dimethyl-2,2′-bipyridine (Me2bpy) or 6-phenyl-2,2′-bipyridine (Phbpy). The crystal structures of [Cu(POP)(Phbpy)][PF6]·Et2O, [Cu(POP)(Etbpy)][PF6]·Et2O, [Cu(xantphos)(Me2bpy)][PF6], [Cu(xantphos)(Mebpy)][PF6]·CH2Cl2·0.4Et2O, [Cu(xantphos)(Etbpy)][PF6]·CH2Cl2·1.5H2O and [Cu(xantphos)(Phbpy)][PF6] are described; each copper(I) centre is distorted tetrahedral. In the crystallographically determined structures, the N^N domain in [Cu(xantphos)(Phbpy)]+ and [Cu(…

XantphosLigand02 engineering and technologyGeneral ChemistryCrystal structureNuclear magnetic resonance spectroscopy010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences22'-Bipyridine0104 chemical scienceschemistry.chemical_compoundCrystallographyElectron transferchemistryExcited stateMaterials ChemistrySinglet state0210 nano-technology
researchProduct

Ternary Organic Solar Cell with a Near‐Infrared Absorbing Selenophene–Diketopyrrolopyrrole‐Based Nonfullerene Acceptor and an Efficiency above 10%

2020

Materials scienceOrganic solar cellNear-infrared spectroscopyEnergy Engineering and Power TechnologyElectrical and Electronic EngineeringPhotochemistryTernary operationAcceptorAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsSolar RRL
researchProduct

On the Structure and Chiral Aggregation of Liquid Crystalline Star‐Shaped Triazines H‐Bonded to Benzoic Acids

2020

The ability of a star-shaped tris(triazolyl)triazine derivative to hierarchically build supramolecular chiral columnar organizations through the formation of H-bonded complexes with benzoic acids was studied from a theoretical and experimental point of view. The combined study has been done at three different levels including the study of the structure of the triazine core, the association with benzoic acids in stoichiometry 1:3, and the assembly of 1:3 complexes in helical aggregates. Although the star-shaped triazine core crystallizes in a non-C3 conformation, the C3 -symmetric conformation is theoretically predicted to be more stable and gives rise to a favorable C3 supramolecular 1:3 co…

Supramolecular chirality010405 organic chemistryOrganic ChemistrySupramolecular chemistryStackingMesophaseGeneral Chemistry010402 general chemistry01 natural sciencesCatalysis0104 chemical sciencesCrystallographychemistry.chemical_compoundchemistryLiquid crystalSelf-assemblyChirality (chemistry)TriazineChemistry – A European Journal
researchProduct

Charge-Separation and Charge-Recombination Rate Constants in a Donor–Acceptor Buckybowl-Based Supramolecular Complex: Multistate and Solvent Effects

2021

The kinetics of the nonradiative photoinduced processes (charge-separation and charge-recombination) experimented in solution by a supramolecular complex formed by an electron-donating bowl-shaped truxene-tetrathiafulvalene (truxTTF) derivative and an electron-accepting fullerene fragment (hemifullerene, C30H12) has been theoretically investigated. The truxTTF·C30H12 heterodimer shows a complex decay mechanism after photoexcitation with the participation of several low-lying excited states of different nature (local and charge-transfer excitations) all close in energy. In this scenario, the absolute rate constants for all of the plausible charge-separation (CS) and charge-recombination (CR)…

PhotoexcitationReaction rate constantFullereneChemistryExcited stateSupramolecular chemistryCharge (physics)Electronic structurePhysical and Theoretical ChemistrySolvent effectsMolecular physicsArticleThe Journal of Physical Chemistry. a
researchProduct

Self-assembly of Clicked Star-Shaped Triazines into Functional Nanostructures

2019

Two non‐amphiphilic star‐shaped 2,4,6‐tris(1,2,3‐triazol‐4‐yl)‐1,3,5‐triazines showing different behavior in terms of self‐assembly and luminescent properties are described. They aggregate in the liquid phase to form low‐dimensional nanostructures with a variety of morphologies, such as spherical particles, one‐hole hollow spheres, toroids, twisted fibers or helical nanotubes, just by varying the conditions of a straightforward reprecipitation method. Aggregation has an opposite effect concerning the fluorescent properties of the proposed compounds, either causing the enhancement or the quenching of the emission after the self‐assembly. Quantum chemical calculations have been also performed…

BiomaterialsPhysicsRenewable Energy Sustainability and the EnvironmentMaterials ChemistryEnergy Engineering and Power Technology02 engineering and technologyStar (graph theory)010402 general chemistry021001 nanoscience & nanotechnology0210 nano-technology01 natural sciencesHumanities0104 chemical sciences
researchProduct

Influence of theZ/EIsomerism on the Pathway Complexity of a Squaramide‐Based Macrocycle

2020

The rising interest on pathway complexity in supramolecular polymerization has prompted the finding of novel monomer designs able to stabilize kinetically trapped species and generate supramolecular polymorphs. In the present work, the exploitation of the Z/E (geometrical) isomerism of squaramide (SQ) units to produce various self-assembled isoforms and complex supramolecular polymerization pathways in methylcyclohexane/CHCl3 mixtures is reported for the first time. This is achieved by using a new bissquaramidic macrocycle (MSq) that self-assembles into two markedly different thermodynamic aggregates, AggA (discrete cyclic structures) and AggB (fibrillar structures), depending on the solven…

Supramolecular chemistry02 engineering and technology010402 general chemistry01 natural sciencesPolymerizationBiomaterialschemistry.chemical_compoundIsomerismSpectroscopy Fourier Transform InfraredGeneral Materials ScienceConformational isomerismchemistry.chemical_classificationQuinineHydrogen bondSquaramideHydrogen BondingGeneral Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesSupramolecular polymersCrystallographyMonomerPolymerizationchemistryMethylcyclohexane0210 nano-technologyBiotechnologySmall
researchProduct

Effect of molecular geometry and extended conjugation on the performance of hydrogen-bonded semiconductors in organic thin-film field-effect transist…

2021

A general synthetic method has been used for the condensation of the 7-azaindole substructure at both extremes of centrosymmetric fused polyheteroaromatic systems. Four different aromatic spacers (benzene, naphthalene, anthracene and pyrene) that modify the molecular geometry and the π-conjugated surface have proved the ability of 7-azaindole to work as a building block that can control the crystal packing through reciprocal hydrogen bond interactions. Two possible self-assembled columnar arrangements have been observed as a result of the π–π interactions between hydrogen-bonded ribbon-like supramolecular structures. A detailed comparative analysis of the molecular organisation driven by hy…

AnthraceneMaterials scienceHydrogenHydrogen bondSupramolecular chemistrychemistry.chemical_elementGeneral ChemistryCrystalchemistry.chemical_compoundMolecular geometrychemistryChemical physicsMaterials ChemistryPyreneThin filmJournal of Materials Chemistry C
researchProduct

Self-Assembly-Directed Organization of a Fullerene–Bisporphyrin into Supramolecular Giant Donut Structures for Excited-State Charge Stabilization

2021

Functional materials composed of spontaneously self-assembled electron donor and acceptor entities capable of generating long-lived charge-separated states upon photoillumination are in great demand as they are key in building the next generation of light energy harvesting devices. However, creating such well-defined architectures is challenging due to the intricate molecular design, multistep synthesis, and issues associated in demonstrating long-lived electron transfer. In this study, we have accomplished these tasks and report the synthesis of a new fullerene–bis-Zn-porphyrin e-bisadduct by tether-directed functionalization of C60 via a multistep synthetic protocol. Supramolecular oligom…

FullereneSupramolecular structures and assembliesChemistrySupramolecular chemistryGeneral ChemistryBiochemistryAcceptorArticleCatalysisElectron transferColloid and Surface ChemistryCharge transferChemical structureChemical physicsExcited stateEnergy levelMoleculePyrrolesSelf-assemblyMolecular structure
researchProduct

Decoding the Consequences of Increasing the Size of Self-Assembling Tricarboxamides on Chiral Amplification

2019

A complete series of experimental and theoretical investigations on the supramolecular polymerization of chiral (1 and 2) and achiral (3) oligo(phenylene ethynylene) tricarboxamides (OPE-TAs) is reported. The performance of seargents-and-soldiers (SaS) and majority rules (MR) experiments has allowed deriving a full set of thermodynamic parameters, including the helix reversal penalty (HRP) and the mismatch penalty (MMP). The results described illustrate the influence exerted by the number of stereogenic centers per monomeric unit and the temperature on the chiral amplification phenomenon. While the HRP decreases upon decreasing the number of chiral side chains, the MMP follows an opposite t…

chemistry.chemical_classificationSteric effectsSupramolecular chemistryGeneral Chemistry010402 general chemistry01 natural sciencesBiochemistryCatalysis0104 chemical sciencesStereocenterSupramolecular polymersCrystallographyColloid and Surface ChemistrychemistryPhenyleneHelixSide chainChirality (chemistry)Journal of the American Chemical Society
researchProduct

Impact of Molecular Size and Shape on the Supramolecular Co‐Assembly of Chiral Tricarboxamides: A Comparative Study

2020

We report herein a comparative investigation of the chiral amplification features of a series of three families of C 3 -symmetric tricarboxamides: 1,3,5-triphenylbenzenetricarboxamides (TPBAs), benzenetricarboxamides (BTAs) and oligo(phenylene ethynylene) tricarboxamides (OPE-TAs). As previously observed for BTAs and OPE-TAs, a similar dichroic response is obtained for TPBAs decorated with three, two or only one chiral side chain bearing stereogenic centers, thus confirming the efficient transfer of point chirality to the supramolecular helical aggregates. Unlike BTAs and OPE-TAs, the chiral amplification ability of TPBAs in majority rules experiments shows a negligible dependence on the nu…

chemistry.chemical_classificationSteric effects010405 organic chemistryChemistryOrganic ChemistrySupramolecular chemistryGeneral Chemistry010402 general chemistry01 natural sciencesCatalysis0104 chemical sciencesStereocenterSupramolecular polymersCrystallographyPhenyleneSide chainMoleculeChirality (chemistry)Chemistry – A European Journal
researchProduct

Cover Feature: Self-Assembly of Clicked Star-Shaped Triazines into Functional Nanostructures (ChemNanoMat 1/2019)

2018

BiomaterialsNanotubeMaterials scienceNanostructureRenewable Energy Sustainability and the EnvironmentFeature (computer vision)Materials ChemistryEnergy Engineering and Power TechnologyNanotechnologyCover (algebra)Self-assemblyStar (graph theory)ChemNanoMat
researchProduct

Distance Matters: Biasing Mechanism, Transfer of Asymmetry, and Stereomutation in N-Annulated Perylene Bisimide Supramolecular Polymers

2021

International audience; The synthesis of two series of N-annulated perylene bisimides (PBIs), compounds 1 and 2, is reported, and their self-assembling features are thoroughly investigated by a complete set of spectroscopic measurements and theoretical calculations. The study corroborates the enormous influence that the distance between the PBI core and the peripheral groups exerts on the chiroptical properties and the supramolecular polymerization mechanism. Compounds 1, with the peripheral groups separated from the central PBI core by two methylenes and an ester group, form J-type supramolecular polymers in a cooperative manner but exhibit negligible chiroptical properties. The lack of cl…

chemistry.chemical_classificationIsodesmic reactionQuenching (fluorescence)010405 organic chemistrySupramolecular chemistryQuímica orgánicaGeneral Chemistry010402 general chemistry01 natural sciencesBiochemistryArticleCatalysis0104 chemical sciencesSupramolecular polymersSolventchemistry.chemical_compoundCrystallographyColloid and Surface ChemistrychemistryPolymerization[CHIM]Chemical SciencesMethylcyclohexanePerylene
researchProduct

Flipping Motion To Bias the Organized Supramolecular Polymerization of N-Heterotriangulenes

2019

Synergistic experimental and theoretical studies have allowed the disentangling of the possible pathways for the supramolecular polymerization of a series of dicyanovinyl-bridged N-heterotriangulene (NHT) derivatives bearing benzamide units with achiral (1a) and chiral (1b,c) side chains. The synthesis of these bowl-shaped, self-assembling units yields a mixture of monomeric species with C3- and C1-symmetry. Both monomeric species are able to self-assemble into different supramolecular aggregates with sufficient stability to coexist in freshly prepared solutions. The dissimilar ratio of the aggregates initially generated results in different spectroscopic features and, more specifically, in…

Steric effectsCircular dichroismGeneral Chemical EngineeringSupramolecular chemistry02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesSpectral line0104 chemical scienceschemistry.chemical_compoundCrystallographyMonomerchemistryPolymerizationMaterials ChemistrySide chain0210 nano-technologyBenzamideChemistry of Materials
researchProduct

Highly Stable and Efficient Light-Emitting Electrochemical Cells Based on Cationic Iridium Complexes Bearing Arylazole Ancillary Ligands.

2017

A series of bis-cyclometalated iridium(III) complexes of general formula [Ir(ppy)2(N∧N)][PF6] (ppy− = 2-phenylpyridinate; N∧N = 2-(1H-imidazol-2-yl)pyridine (1), 2-(2-pyridyl)benzimidazole (2), 1-methyl-2-pyridin-2-yl- 1H-benzimidazole (3), 2-(4′-thiazolyl)benzimidazole (4), 1- methyl-2-(4′-thiazolyl)benzimidazole (5)) is reported, and their use as electroluminescent materials in light-emitting electrochemical cell (LEC) devices is investigated. [2][PF6] and [3][PF6] are orange emitters with intense unstructured emission around 590 nm in acetonitrile solution. [1][PF6], [4][PF6], and [5][PF6] are green weak emitters with structured emission bands peaking around 500 nm. The different photoph…

BenzimidazoleLigandchemistry.chemical_element02 engineering and technologyQuímica analíticaElectroluminescence010402 general chemistry021001 nanoscience & nanotechnologyPhotochemistry01 natural sciences0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryPyridineIridiumChemistry AnalyticPhysical and Theoretical ChemistryTriplet state0210 nano-technologyAcetonitrileHOMO/LUMOInorganic chemistry
researchProduct

CCDC 1422375: Experimental Crystal Structure Determination

2016

Related Article: Sarah Keller, Antonio Pertegás, Giulia Longo, Laura Martínez, Jesús Cerdá, José M. Junquera-Hernández, Alessandro Prescimone, Edwin C. Constable, Catherine E. Housecroft, Enrique Ortí, Henk J. Bolink|2016|J.Mater.Chem.C|4|3857|doi:10.1039/C5TC03725E

Space GroupCrystallographyCrystal SystemCrystal Structure((oxydi-21-phenylene)bis(diphenylphosphine))-(6-phenyl-22'-bipyridine)-copper(i) hexafluorophosphate diethyl ether solvateCell ParametersExperimental 3D Coordinates
researchProduct

CCDC 1422372: Experimental Crystal Structure Determination

2016

Related Article: Sarah Keller, Antonio Pertegás, Giulia Longo, Laura Martínez, Jesús Cerdá, José M. Junquera-Hernández, Alessandro Prescimone, Edwin C. Constable, Catherine E. Housecroft, Enrique Ortí, Henk J. Bolink|2016|J.Mater.Chem.C|4|3857|doi:10.1039/C5TC03725E

Space GroupCrystallography((99-Dimethyl-9H-xanthene-45-diyl)bis(diphenylphosphine))-(6-methyl-22'-bipyridine)-copper(i) hexafluorophosphate dichloromethane diethyl ether solvateCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
researchProduct

CCDC 1986850: Experimental Crystal Structure Determination

2020

Related Article: Beatriz Feringán, Jesús Cerdá, Beatriz Diosdado, Juan Aragó, Enrique Ortí, Raquel Giménez, Teresa Sierra|2020|Chem.-Eur.J.|26|15313|doi:10.1002/chem.202001271

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameters24-bis[1-(4-butoxyphenyl)-1H-123-triazol-4-yl]-6-[1-(4-butoxyphenyl)-1H-123-triazol-4-yl]-135-triazine unknown solvate dihydrateExperimental 3D Coordinates
researchProduct

CCDC 1519073: Experimental Crystal Structure Determination

2017

Related Article: Marta Martínez-Alonso, Jesús Cerdá, Cristina Momblona, Antonio Pertegás, José M. Junquera-Hernández, Aránzazu Heras, Ana M. Rodríguez, Gustavo Espino, Henk Bolink, and Enrique Ortí|2017|Inorg.Chem.|56|10298|doi:10.1021/acs.inorgchem.7b01167

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parametersbis(2-(pyridin-2-yl)phenyl)-(2-(13-thiazol-4-yl)-1H-benzimidazole)-iridium(iii) hexafluorophosphateExperimental 3D Coordinates
researchProduct

CCDC 1429456: Experimental Crystal Structure Determination

2016

Related Article: Sarah Keller, Antonio Pertegás, Giulia Longo, Laura Martínez, Jesús Cerdá, José M. Junquera-Hernández, Alessandro Prescimone, Edwin C. Constable, Catherine E. Housecroft, Enrique Ortí, Henk J. Bolink|2016|J.Mater.Chem.C|4|3857|doi:10.1039/C5TC03725E

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameters((99-Dimethyl-9H-xanthene-45-diyl)bis(diphenylphosphine))-(6-ethyl-22'-bipyridine)-copper(i) hexafluorophosphate dichloromethane solvate sesquihydrateExperimental 3D Coordinates
researchProduct

CCDC 1519074: Experimental Crystal Structure Determination

2017

Related Article: Marta Martínez-Alonso, Jesús Cerdá, Cristina Momblona, Antonio Pertegás, José M. Junquera-Hernández, Aránzazu Heras, Ana M. Rodríguez, Gustavo Espino, Henk Bolink, and Enrique Ortí|2017|Inorg.Chem.|56|10298|doi:10.1021/acs.inorgchem.7b01167

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameters(1-methyl-2-(13-thiazol-4-yl)-1H-benzimidazole)-bis(2-(pyridin-2-yl)phenyl)-iridium(iii) hexafluorophosphateExperimental 3D Coordinates
researchProduct

CCDC 1422374: Experimental Crystal Structure Determination

2016

Related Article: Sarah Keller, Antonio Pertegás, Giulia Longo, Laura Martínez, Jesús Cerdá, José M. Junquera-Hernández, Alessandro Prescimone, Edwin C. Constable, Catherine E. Housecroft, Enrique Ortí, Henk J. Bolink|2016|J.Mater.Chem.C|4|3857|doi:10.1039/C5TC03725E

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameters(6-Ethyl-22'-bipyridine)-((oxydi-21-phenylene)bis(diphenylphosphine))-copper(i) hexafluorophosphate diethyl ether solvateExperimental 3D Coordinates
researchProduct

CCDC 1421913: Experimental Crystal Structure Determination

2016

Related Article: Cathrin D. Ertl, Lidón Gil-Escrig, Jesús Cerdá, Antonio Pertegás, Henk J. Bolink, José M. Junquera-Hernández, Alessandro Prescimone, Markus Neuburger, Edwin C. Constable, Enrique Ortí, Catherine E. Housecroft|2016|Dalton Trans.|45|11668|doi:10.1039/C6DT01325B

Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates(22'-bipyridine)-bis(5-(methylsulfonyl)-2-(pyridin-2-yl)phenyl)-iridium hexafluorophosphate dichloromethane solvate
researchProduct

CCDC 1421914: Experimental Crystal Structure Determination

2016

Related Article: Cathrin D. Ertl, Lidón Gil-Escrig, Jesús Cerdá, Antonio Pertegás, Henk J. Bolink, José M. Junquera-Hernández, Alessandro Prescimone, Markus Neuburger, Edwin C. Constable, Enrique Ortí, Catherine E. Housecroft|2016|Dalton Trans.|45|11668|doi:10.1039/C6DT01325B

Space GroupCrystallographyCrystal System(22'-bipyridine)-bis(4-(methylsulfonyl)-2-(pyridin-2-yl)phenyl)-iridium hexafluorophosphate hydrateCrystal StructureCell ParametersExperimental 3D Coordinates
researchProduct

CCDC 1055780: Experimental Crystal Structure Determination

2015

Related Article: Cathrin D. Ertl, Jesús Cerdá, José M. Junquera-Hernández, Antonio Pertegás, Henk J. Bolink, Edwin C. Constable, Markus Neuburger, Enrique Ortí, Catherine E. Housecroft|2015|RSC Advances|5|42815|doi:10.1039/C5RA07940C

Space GroupCrystallographyCrystal SystemCrystal Structure(2-(35-dimethyl-1H-pyrazol-1-yl)pyridine)-bis(4-(methylsulfonyl)-2-(pyridin-2-yl)phenyl)-iridium hexafluorophosphate acetonitrile solvateCell ParametersExperimental 3D Coordinates
researchProduct

CCDC 2069805: Experimental Crystal Structure Determination

2021

Related Article: Paula Gómez, Jesús Cerdá, Miriam Más-Montoya, Stamatis Georgakopoulos, Iván da Silva, Antonio García, Enrique Ortí, Juan Aragó, David Curiel|2021|J.Mater.Chem.C|9|10819|doi:10.1039/D1TC01328A

Space GroupCrystallographyCrystal System513-dihydrodipyrido[23-b:23-b']naphtho[18-fg:54-f'g']diindoleCrystal StructureCell ParametersExperimental 3D Coordinates
researchProduct

CCDC 2069806: Experimental Crystal Structure Determination

2021

Related Article: Paula Gómez, Jesús Cerdá, Miriam Más-Montoya, Stamatis Georgakopoulos, Iván da Silva, Antonio García, Enrique Ortí, Juan Aragó, David Curiel|2021|J.Mater.Chem.C|9|10819|doi:10.1039/D1TC01328A

Space GroupCrystallography512-dihydropyrido[23-b]pyrido[2'3':23]indolo[76-g]indoleCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
researchProduct

CCDC 1421915: Experimental Crystal Structure Determination

2016

Related Article: Cathrin D. Ertl, Lidón Gil-Escrig, Jesús Cerdá, Antonio Pertegás, Henk J. Bolink, José M. Junquera-Hernández, Alessandro Prescimone, Markus Neuburger, Edwin C. Constable, Enrique Ortí, Catherine E. Housecroft|2016|Dalton Trans.|45|11668|doi:10.1039/C6DT01325B

Space GroupCrystallography(22'-bipyridine)-bis(3-(methylsulfonyl)-2-(pyridin-2-yl)phenyl)-iridium hexafluorophosphateCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
researchProduct

CCDC 1422373: Experimental Crystal Structure Determination

2016

Related Article: Sarah Keller, Antonio Pertegás, Giulia Longo, Laura Martínez, Jesús Cerdá, José M. Junquera-Hernández, Alessandro Prescimone, Edwin C. Constable, Catherine E. Housecroft, Enrique Ortí, Henk J. Bolink|2016|J.Mater.Chem.C|4|3857|doi:10.1039/C5TC03725E

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameters(66'-Dimethyl-22'-bipyridine)-((99-dimethyl-9H-xanthene-45-diyl)bis(diphenylphosphine))-copper(i) hexafluorophosphateExperimental 3D Coordinates
researchProduct

CCDC 2036011: Experimental Crystal Structure Determination

2021

Related Article: Paula Gómez, Stamatis Georgakopoulos, Miriam Más-Montoya, Jesús Cerdá, José Pérez, Enrique Ortí, Juan Aragó, David Curiel|2021|ACS Applied Materials and Interfaces|13|8620|doi:10.1021/acsami.0c18928

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameters513-dihydrobenzo[12-a:45-a']dicarbazoleExperimental 3D Coordinates
researchProduct

CCDC 1435492: Experimental Crystal Structure Determination

2016

Related Article: Sarah Keller, Antonio Pertegás, Giulia Longo, Laura Martínez, Jesús Cerdá, José M. Junquera-Hernández, Alessandro Prescimone, Edwin C. Constable, Catherine E. Housecroft, Enrique Ortí, Henk J. Bolink|2016|J.Mater.Chem.C|4|3857|doi:10.1039/C5TC03725E

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameters((99-dimethyl-9H-xanthene-45-diyl)bis(diphenylphosphine))-(6-phenyl-22'-bipyridine)-copper(i) hexafluorophosphateExperimental 3D Coordinates
researchProduct