Academic literature on the topic 'Tripyrrole'
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Journal articles on the topic "Tripyrrole"
Bröring, Martin, Dirk Penno, and Robin Krüger. "MnII/O2-oxidation products of α,ω-dimethyldipyrrins." Journal of Porphyrins and Phthalocyanines 11, no. 10 (October 2007): 755–60. http://dx.doi.org/10.1142/s1088424607000874.
Full textBlanco, Juan B., Verónica I. Dodero, M. Eugenio Vázquez, Manuel Mosquera, Luis Castedo, and José L. Mascareñas. "Sequence-Specific DNA Binding by Noncovalent Peptide–Tripyrrole Conjugates." Angewandte Chemie International Edition 45, no. 48 (December 11, 2006): 8210–14. http://dx.doi.org/10.1002/anie.200603115.
Full textBlanco, Juan B., Verónica I. Dodero, M. Eugenio Vázquez, Manuel Mosquera, Luis Castedo, and José L. Mascareñas. "Sequence-Specific DNA Binding by Noncovalent Peptide–Tripyrrole Conjugates." Angewandte Chemie 118, no. 48 (December 11, 2006): 8390–94. http://dx.doi.org/10.1002/ange.200603115.
Full textFürstner, Alois, Jaroslaw Grabowski, and Christian W. Lehmann. "Total Synthesis and Structural Refinement of the Cyclic Tripyrrole Pigment Nonylprodigiosin." Journal of Organic Chemistry 64, no. 22 (October 1999): 8275–80. http://dx.doi.org/10.1021/jo991021i.
Full textBlanco, Juan B., Olalla Vázquez, José Martínez-Costas, Luis Castedo, and José L. Mascareñas. "High Affinity, Sequence Specific DNA Binding by Synthetic Tripyrrole-Peptide Conjugates." Chemistry - A European Journal 11, no. 14 (July 4, 2005): 4171–78. http://dx.doi.org/10.1002/chem.200500010.
Full textRath, Sankar Prasad, Marilyn M. Olmstead, Lechoslaw Latos-Grażyński, and Alan L. Balch. "Formation and Isolation of an Iron-Tripyrrole Complex from Heme Degradation." Journal of the American Chemical Society 125, no. 42 (October 2003): 12678–79. http://dx.doi.org/10.1021/ja036656k.
Full textKreher, Richard P., and Thomas Hildebrand. "Struktur und Reaktivität von isoanellierten heterocyclischen Systemen mit 4nπ- und (4n+2)π-Elektronen, XIV [1]: Tri- und tetracyclische Hetarene mit lokalisierten oder delokalisierten PyrroI-Strukturen / Structure and Reactivity of Isoannellated Heterocyclic Systems with 4nπ- and (4n+2)π-Electrons, XIV [1]: Tri- and Tetracyclic Hetarenes with Localized or Delocalized Pyrrole Units." Zeitschrift für Naturforschung B 43, no. 1 (January 1, 1988): 125–31. http://dx.doi.org/10.1515/znb-1988-0122.
Full textSubramanian, Mahesh, Ramesh Chander, and Subrata Chattopadhyay. "A novel naturally occurring tripyrrole with potential nuclease and anti-tumour properties." Bioorganic & Medicinal Chemistry 14, no. 8 (April 2006): 2480–86. http://dx.doi.org/10.1016/j.bmc.2005.11.062.
Full textBérubé, Christian D., Mohammad Yazdanbakhsh, Sandro Gambarotta, and Glenn P. A. Yap. "Serendipitous Isolation of the First Example of a Mixed-Valence Samarium Tripyrrole Complex." Organometallics 22, no. 18 (September 2003): 3742–47. http://dx.doi.org/10.1021/om030155q.
Full textFuerstner, Alois, Jaroslaw Grabowski, and Christian W. Lehmann. "ChemInform Abstract: Total Synthesis and Structural Refinement of the Cyclic Tripyrrole Pigment Nonylprodigiosin." ChemInform 31, no. 7 (June 10, 2010): no. http://dx.doi.org/10.1002/chin.200007185.
Full textDissertations / Theses on the topic "Tripyrrole"
Chawrai, Suresh Rameshlal. "Studies on biosynthetic pathway of a tripyrrole secondary metabolite, prodigiosin." Thesis, University of Cambridge, 2010. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.608825.
Full textBhalara, Hiral Dolarbhai. "Elucidation of the biosynthetic pathway of a tripyrrole secondary metabolite, prodigiosin." Thesis, University of Cambridge, 2011. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.609352.
Full textMbyas, Saroukou Mariame Scarlett. "Synthèse et étude de nouvelles molécules potentiellement polymérisables pour la fabrication de matériaux électroluminescents : analogues du 1,3,5 benzènetripyrrole, méthyle 3,5-bipyrrolebenzoate et 6,12-diméthyle-1,5-dipyrrolediazocane." Thèse, 2014. http://hdl.handle.net/1866/13695.
Full textLes pyrroles sont une classe de molécules que l'on trouve dans divers produits naturels ainsi que dans la composition chimique de certains médicaments en raison de leurs propriétés biologiques intéressantes. Le Lipitor, la Tolmetin et l'Amtolmetin sont des exemples de médicaments à base de pyrroles 1,2,5 substitués dont les activités biologiques ont été certifiées. Les pyrroles sont aussi utilisés comme précurseurs de polymères, oligomères et dendrimères semi-conducteurs nécessaires à la synthèse de certains matériaux électroluminescents, tels que les diodes organiques électroluminescentes, les transistors à effets de champ et les cellules organiques photovoltaïques. Nous nous sommes intéressés à ces polymères conjugués à base de pyrroles en raison de leurs qualités de bons conducteurs, de leurs propriétés optiques et électrochimiques que leur confère la délocalisation des électrons le long de leurs chaines carbonées. L'objectif général des travaux présentés dans ce mémoire est de synthétiser de nouvelles molécules à base de pyrroles pouvant éventuellement servir de précurseurs à la synthèse de dendrimères conjugués ainsi qu'à la synthèse de molécules thérapeutiques. Une étude de leurs propriétés électroniques et électrochimiques sera effectuée afin de déterminer leur potentiel pour la fabrication de matériaux électroluminescents. Dans un premier temps, la synthèse des analogues du 1,3,5-benzènetripyrrole a été faite en trois étapes à partir du 1,3,5-benzènetricarboxylate de triméthyle. Celui-ci a été converti en premier lieu en 1,3,5-benzènetricétone-γ,δ-insaturée lors d'une réaction de Grignard catalysée par le cyanure de cuivre. Ce dernier composé fut oxydé lors de la seconde étape en 1,3,5-tri-(4-oxopentanoyl)benzène selon un protocole modifié de la réaction de Tsuji-Wacker. Enfin, la réaction de condensation de Paal-Knorr du 1,3,5-tri-(4-oxopentanoyl)benzène de l'étape précédente mène au 1,3,5-benzènetripyrrole N-substitué selon l'amine utilisée pour la condensation, avec des rendements entre 44 et 60%. La réaction incomplète du bromure de vinylmagnésium avec le 1,3,5-benzènetricarboxylate de triméthyle mène au méthyl-3,5-di-(pent-4-énoyl)benzoate, qui a été converti en méthyl-3,5-dipyrrolylbenzoate suite à la réaction de Tsuji-Wacker et de Paal-Knorr avec des rendements entre 30 et 60%. L'étude des propriétés photochimiques et électrochimiques des tripyrroles et des bipyrroles a été faite en collaboration avec le groupe de recherche du professeur William Skene. Les résultats obtenus démontrèrent que ces pyrroles auraient un potentiel pour la synthèse de dendrimères conjugués servant à la fabrication de matériaux électroluminescents. Suite à ces résultats encourageants, la synthèse du 6,12-diméthyle-1,5-dipyrrolediazocane a aussi été réalisée. Celui-ci a été synthétisé à partir de l’ester méthylique de l’acide 3-tert-butoxycarbonylaminopropionique qui a été converti en sa cétone homoallylique correspondante, puis oxydée en N-Boc-3,6-dioxoheptylcarbamate. La condensation de Paal-Knorr de ce dernier composé avec le sel d'hydrochlorure 7-aminoheptane-2,5-dione mène au 6,12-diméthyle-1,5-dipyrrolediazocane avec un rendement de 17%. En somme, la recherche effectuée a permis la synthèse et la caractérisation de six nouvelles molécules ayant des propriétés photochimiques et électrochimiques intéressantes pour la synthèse de polymères et dendrimères conjugués. Ainsi que la synthèse d'un diazacycle, qui de part sa structure pourrait servir de précurseur à la synthèse de molécules thérapeutiques.
Brandt, Carsten D. [Verfasser]. "Tripyrrine - Koordinationschemie an einem Porphyrinfragment : Teil A / Carsten D. Brandt." 2003. http://d-nb.info/968412718/34.
Full textBrandt, Carsten D. "Tripyrrine - Koordinationschemie an einem Porphyrinfragment ; Kristallstrukturanalysen metallorganischer und koordinationschemischer Verbindungen." Doctoral thesis, 2002. https://nbn-resolving.org/urn:nbn:de:bvb:20-opus-5048.
Full textPart I of the presented work describes the preparation and investigation of simple tripyrrin ligands, with a special emphasis on the development of a functional coordination chemistry of this ligand. Part II deals with x-ray crystallographic work performed on organometallic and classical coordination compounds. The recent attempts from other research groups to use open-chain oligopyrroles related to the bile pigments as ligands for novel developments in the fields of molecular recognition, supramolecular and bioinorganic chemistry provided the motivation for the first part of this work. Since almost nothing was known about the coordination behaviour of open-chain oligopyrroles, especially of those with three pyrrolic subunits, a first principal investigation towards the properties of metallotripyrrins appeared as a suitable entry into this field. With respect to the porphyrins, the formal withdrawal of one of the pyrrolic units should create a new, free coordination site at a bound metal ion. This free site is expected to determine the chemistry of metallotripyrrins largely. The synthesis of tripyrrins from pyrrolic precursors by a condensation reaction in trifluoroacetic acid is described in chapter 1. The tripyrrin ligand system is found to be unusually reactive towards even weak nucleophiles. Isolation of the ligand was not successful. However, tripyrrins could unambigously be characterised by a spectroscopic in situ-characterisation using NMR- and MS-techniques. When treating the raw tripyrrin ligands with excessive metal acetates of Fe, Mn, Co, Ni, Pd, Cu or Zn, green solutions are formed in all cases, from which the tripyrrinato complexes of M = Co, Pd, Cu and Zn with divalent tetracoordinated metal ions and trifluoroacetate as the fourth donor can be isolated. From a structural point of view, three different molecular geometries were observed. The Pd(II) ion with its pronounced tendency to establish a square-planar coordination mode yields examples for the strained helical and the pseudoplanar structures. A non strained square planar complex geometry is prevented for sterical arguments due to the presence of the two methyl termini in all new tripyrrin complexes. The trifluoroacetate derivatives of Cu(II) also are found to form pseudoplanar coordination geometries, while Zn(II) always prefers a non-strained pseudotetrahedral variant. The strain stored in the Pd(II) complexes is responsible for the fast ligand exchange reactions of the trifluoroacetate derivatives against halide and pseudohalide anions. In the group of TrpyPdX compounds with X = Cl, Br, I, N3, NCO, NCS, NO3, CN and StBu the pseudoplanar geometry becomes more important then the helical binding mode with an increasing radius of the donor atom of the fourth ligand. The strain energy stored in the Pd(II) tripyrrins was found to support the dissociation of the fourth ligand, yielding the coordinatively and electronically unsaturated 14 VE complex. In order to stabilise this highly reactive species the use of a weakly coordinating anion is of vital importance, and the well-known tetrakis[3,5-bis(trifluormethyl)phenyl]borat [B(Arf)4] was found to be sufficiently stable to fulfil this task. As expected, the coordinatively and electronically unsaturated Pd(II) complex proofs to be very reactive and binds tenaciously to a variety of different donor ligands. As a special case, the reaction of the cation with one equivalent of the tripyrrinatopalladium trifluoroacetate complex yields a dinuclear species, in which two cationic TrpyPd fragments are connected via one trifluoroacetato ligand. Trialkylphosphanes, however, are able to stabilise cationic tetracoordinated species. While usually only four coordinate PdN3P compounds are obtained, the action of trimethylphosphane is different. Pentacoordinate Pd(II) complexes are formed in the presence of excess PMe3. These species, which could be structurally characterised in this thesis, were found to be in a slow equilibrium with the respective mono PMe3 adducts. The unusual reactivity of the tripyrrinatopalladium cation is particularly well visible in its reactions towards diazoalkanes. When treated with the sterically demanding diaryldiazomethane, the first carbene palladium(II) complexes of non heteroatom stabilised carbene ligands were prepared and found to exist as stable compounds at room temperature. Chapter 5 finally describes a preparative entry into the chemistry of cationic cobalt(II)- and zinc(II) tripyrrins. The reactivity and stability of the tripyrrinatocobalt(II) cation is reminescent of the respective species in the palladium(II) series and allows the preparation and isolation of cationic phosphane- and isonitrile complexes. For zinc(II) as the metal a related tricoordinate cation could be isolated and investigated by nmr spectroscopy
Book chapters on the topic "Tripyrrole"
Smith, K. M., and M. G. H. Vicente. "Tripyrroles." In Six-Membered Hetarenes with Two Unlike or More than Two Heteroatoms and Fully Unsaturated Larger-Ring Heterocycles, 1. Georg Thieme Verlag KG, 2004. http://dx.doi.org/10.1055/sos-sd-017-01764.
Full textSmith, K. M., and M. G. H. Vicente. "From Tripyrrolic Intermediates: The [3+1] Route." In Six-Membered Hetarenes with Two Unlike or More than Two Heteroatoms and Fully Unsaturated Larger-Ring Heterocycles, 1. Georg Thieme Verlag KG, 2004. http://dx.doi.org/10.1055/sos-sd-017-01784.
Full textSmith, K. M., and M. G. H. Vicente. "Using a Tripyrrane and a 2,5-Diformyl-1-pyrrole." In Six-Membered Hetarenes with Two Unlike or More than Two Heteroatoms and Fully Unsaturated Larger-Ring Heterocycles, 1. Georg Thieme Verlag KG, 2004. http://dx.doi.org/10.1055/sos-sd-017-01785.
Full textSmith, K. M., and M. G. H. Vicente. "Using a Tripyrrane and a 2,5-Bis[(dimethylamino)methyl]-1-pyrrole." In Six-Membered Hetarenes with Two Unlike or More than Two Heteroatoms and Fully Unsaturated Larger-Ring Heterocycles, 1. Georg Thieme Verlag KG, 2004. http://dx.doi.org/10.1055/sos-sd-017-01786.
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