Search results for "supramolecular"

showing 10 items of 830 documents

Supramolecular Assembly of Metal Complexes by (Aryl)I⋅⋅⋅d[PtII] Halogen Bonds

2020

The theoretical data for the half-lantern complexes [{Pt( CN^ )(μ- SN^ )}2 ] [1-3; CN^ is cyclometalated 2-Ph-benzothiazole; SN^ is 2-SH-pyridine (1), 2-SH-benzoxazole (2), 2-SH-tetrafluorobenzothiazole (3)] indicate that the Pt⋅⋅⋅Pt orbital interaction increases the nucleophilicity of the outer d z2 orbitals to provide assembly with electrophilic species. Complexes 1-3 were co-crystallized with bifunctional halogen bonding (XB) donors to give adducts (1-3)2 ⋅(1,4-diiodotetrafluorobenzene) and infinite polymeric [1⋅1,1'-diiodoperfluorodiphenyl]n . X-ray crystallography revealed that the supramolecular assembly is achieved through (Aryl)I⋅⋅⋅d z2 [PtII ] XBs between iodine σ-holes and lone pa…

chemistry.chemical_classificationHalogen bond010405 organic chemistryArylOrganic ChemistrySupramolecular chemistryGeneral Chemistry010402 general chemistry01 natural sciencesCatalysis0104 chemical sciencesSupramolecular assemblychemistry.chemical_compoundCrystallographychemistryElectrophileNon-covalent interactionsBifunctionalLone pairChemistry – A European Journal
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Iodine Clathrated: A Solid‐State Analogue of the Iodine–Starch Complex

2019

Co-crystallizing iodine with a simple dicationic salt (1,8-diammoniumoctane chloride) results in the clathration of the iodine (I2 ) molecules inside trigonal and hexagonal helical channels of the crystal lattice with 72 wt % overall I2 loading. The I2 inside the bigger trigonal channel forms a I-I⋅⋅⋅I-I⋅⋅⋅I-I halogen-bonded infinite helical chain, while the I2 in the smaller hexagonal channel is disordered. In both channels the I2 interaction with the channel wall happens through I-I⋅⋅⋅Cl- halogen bonds. The helical channels in the crystal lattice are constructed via the strong charge-assisted H2 N+ H⋅⋅⋅Cl- hydrogen bonds between the dications and the chloride anions. The structure shows a…

chemistry.chemical_classificationHalogen bond010405 organic chemistryHydrogen bondOrganic ChemistrySupramolecular chemistrySalt (chemistry)General ChemistryCrystal structure010402 general chemistry01 natural sciencesChlorideCatalysis0104 chemical sciencesCrystallographychemistryHalogenmedicineMoleculemedicine.drugChemistry – A European Journal
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N-Alkyl Ammonium Resorcinarene Salts: A Versatile Family of Calixarene-Related Host Molecules

2016

This chapter presents a review of the recent advances in the chemistry of N-alkylammonium resorcinarenes salt receptors. The Mannich condensation between amines (primary and secondary) and resorcinarenes result in resorcinarene tetrabenzoxazines and tetra-azoxazines. Only 2 isomers out of 16 potential isomers are formed. The resorcinarene tetrabenzoxazines possess deeper cavities than the parent resorcinarenes which are suitable for binding neutral and cationic guests. In the presence of mineral acids, the six-membered oxazine ring in the resorcinarene tetrabenzoxazines is opened, resulting in N-alkylammonium resorcinarene salts (NARSs). The NARSs possess four spatially-fixed anions within …

chemistry.chemical_classificationHalogen bond010405 organic chemistrySupramolecular chemistrySalt (chemistry)Resorcinarene010402 general chemistry01 natural sciences0104 chemical scienceschemistryCalixarenePolymer chemistryOrganic chemistryMoleculeTrifluoromethanesulfonateAlkyl
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Halonium ions as halogen bond donors in the solid state [xl2]y complexes

2015

The utilization of halogen bonding interactions is one of the most rapidly developing areas of supramolecular chemistry. While the other weak non-covalent interactions and their influence on the structure and chemistry of various molecules, complexes, and materials have been investigated extensively, the understanding, utilizations, and true nature of halogen bonding are still relatively unexplored. Thus its final impact in chemistry in general and in materials science has not yet been fully established. Because of the polarized nature of a Z–X bond (Z=electron-withdrawing atom or moiety and X=halogen atom), such a moiety can act as halogen bond donor when the halogen is polarized enough by…

chemistry.chemical_classificationHalogen bondArylInorganic chemistrySupramolecular chemistrysolid statechemistry.chemical_compoundCrystallographychemistryhalogen bondingHalogenMoietyMoleculeHalonium ionX-ray structureta116Alkylhalonium ions
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Halogen-bonded photoresponsive materials

2015

The aim of the present review is to illustrate to the reader the state of the art on the construction of supramolecular azobenzene-containing materials formed by halogen bonding. These materials include several examples of polymeric, liquid crystalline or crystalline species whose performances are either superior to the corresponding performances of their hydrogen-bonded analogues or simply distinctive of the halogen-bonded species. submittedVersion Peer reviewed

chemistry.chemical_classificationHalogen bondAzobenzene; Halogen bonding; Liquid crystals; Photoresponsive materials; PolymersAzobenzeneLiquid crystallinePolymersLiquid crystals116 Chemical sciencesSupramolecular chemistryPolymerchemistry.chemical_compoundchemistryAzobenzeneLiquid crystalPhotoresponsive materialLiquid crystalPolymer chemistryHalogenSettore CHIM/07 - Fondamenti Chimici Delle TecnologieHalogen bondingta116Photoresponsive materials
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Alternative Motifs for Halogen Bonding

2013

The halogen-bonding interaction is one of the rising stars in supramolecular chemistry. Although other weak interactions and their influence on the structure and chemistry of various molecules, complexes and materials have been investigated thoroughly, the field of halogen bonding is still quite unexplored and its impact on chemistry in general is yet to be fully revealed. In principle, every Y–X bond (Y = electron-withdrawing atom or moiety, X = halogen atom) can act as a halogen-bond donor when the halogen is polarized enough by Y. Perfluorohalocarbons are iconic halogen-bond donor molecules in which Y is a perfluorinated aryl or alkyl moiety and X is either iodine or bromine. In this art…

chemistry.chemical_classificationHalogen bondOrganic ChemistrySupramolecular chemistryCrystal engineeringCrystallographyMolecular recognitionchemistryHalogenMoietyOrganic chemistryMoleculePhysical and Theoretical ChemistryAlkylEuropean Journal of Organic Chemistry
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Halogen bonded supramolecular complexes and networks

2008

In spite of some controversy of the true nature of the interaction between polarized halogen atoms and neutral or charged Lewis bases, termed “halogen bonding”, as a primary interaction, it is a very useful new tool/way to construct supramolecular complexes and networks. This is especially true in solid state supramolecular chemistry where utilization of weak intermolecular interactions such as halogen bonding opens up new insights to materials design and supramolecular synthesis.

chemistry.chemical_classificationHalogen bondStereochemistryIntermolecular forceSupramolecular chemistryGeneral ChemistryCondensed Matter PhysicsCrystal engineeringSupramolecular polymersCrystallographychemistryHalogenGeneral Materials ScienceLewis acids and basesSupramolecular catalysisCrystEngComm
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Photoresponsive ionic liquid crystals assembled: Via halogen bond: En route towards light-controllable ion transporters

2017

We demonstrate that halogen bonding (XB) can offer a novel approach for the construction of photoresponsive ionic liquid crystals. In particular, we assembled two new supramolecular complexes based on 1-ethyl-3-methylimidazolium iodides and azobenzene derivatives containing an iodotetrafluoro-benzene ring as XB donor, where the iodide anion acted as an XB acceptor. DSC and X-ray diffraction analyses revealed that the preferred stoichiometry between the XB donors and acceptors is 2 : 1, and that the iodide anions act as bidentate XB-acceptors, binding two azobenzene derivatives. Due to the high directionality of the XB, calamitic superanions are obtained, while the segregation occurring betw…

chemistry.chemical_classificationHalogen bondta114ChemistryInorganic chemistryIodideSupramolecular chemistryIonic bonding02 engineering and technologySupramolecular Chemistry Liquid Crystals Halogen Bonding Photoresponsive010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesAcceptor0104 chemical sciencesCrystallographychemistry.chemical_compoundAzobenzeneIonic liquidMoleculeSettore CHIM/07 - Fondamenti Chimici Delle TecnologiePhysical and Theoretical Chemistry0210 nano-technology
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Hierarchy of Asymmetry at Work: Chain-Dependent Helix-to-Helix Interactions in Supramolecular Polymers.

2018

A detailed investigation of the hierarchy of asymmetry operating in the self-assembly of achiral (1) and chiral ((S)-2 and (R)-3) 1,3,5-triphenylbenzenetricarboxamides (TPBAs) is reported. The aggregation of these TPBAs is conditioned by the point chirality at the peripheral side chains for (S)-2 and (R)-3. An efficient helix-to-helix interaction that goes further in the organization of fibrillar bundles is experimentally detected and theoretically supported only for the achiral TPBA 1. The effective interdigitation of the achiral aliphatic side chains produces a social self-sorting to form preferentially heterochiral macromolecular aggregates.

chemistry.chemical_classificationHierarchy (mathematics)010405 organic chemistrymedia_common.quotation_subjectOrganic ChemistryGeneral Chemistry010402 general chemistry01 natural sciencesAsymmetryCatalysis0104 chemical sciencesSupramolecular polymersCrystallographyChain (algebraic topology)chemistryHelixSide chainChirality (chemistry)Macromoleculemedia_commonChemistry (Weinheim an der Bergstrasse, Germany)
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Fluorescent 3-amino-1,8-naphthalimide Tröger’s bases (3-amino-TBNaps) incorporating protected α-amino acids

2021

Abstract The synthesis of 3-amino-1,8-naphthalimide Troger’s base’s (TBNaps) 2–4, possessing several amino acids at the imide terminus, from the corresponding 3-amino-1,8-naphthalimide (Naps) units is described. The solid-state X-ray crystal structure of the related 3-amino-TBNaps piperidino-ethyl derivative 1, and its supramolecular packing is also outlined. In these molecules (as demonstrated from the X-ray structure of 1), the two Naps units have an orthogonal arrangement that makes them potentially attractive β-turn mimics for incorporation into peptide and polypeptide structures. The ground and the excited state properties of these systems were evaluated in a range of solvents that var…

chemistry.chemical_classificationHydrogen bondStereochemistryOrganic ChemistrySupramolecular chemistryPeptideCrystal structureBiochemistryAmino acidchemistry.chemical_compoundchemistryDrug DiscoveryMoleculeImideDerivative (chemistry)Tetrahedron Letters
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