Новые серосодержащие терпиридины с расширенной системой сопряжения и их координационные соединения с родием и рутением (1105638), страница 19
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51. - P. 6428-6430.24. S. Wanniarachchi, B.J. Liddle, B. Kizer, J.S. Hewage, S.V. Lindeman, J.R. Gardinier.Syntheses and electronic properties of rhodium(III) complexes bearing a redox-active ligand. //Inorg. Chem. - 2012. - V. 51. - P. 10572-10580.25. D.L. Ashford, W. Song, J.J.
Concepcion, C.R.K. Glasson, M.K. Brennaman, M.R. Norris, Z. Fang,J.L. Templeton, T.J. Meyer. Photoinduced electron transfer in a chromophore−catalystassembly anchored to TiO2. // J. Am. Chem. Soc. - 2012. - V. 134. - P. 19189−19198.26. P. Sinha, D. Singh Raghuvanshi, K. Nand Singh, L. Mishra. Synthesis, characterization andcatalytic property of ruthenium–terpyridyl complexes. // Polyhedron - 2012. - V. 31. - P. 227-234.27. J.-P. Collin, S. Guillerez, J.-P. Sauvage, F. Barigelletti, L. De Cola, L. Flamigni, V. Balzani.Photoinduced processes in dyads and triads containing a ruthenium(II)-bis(terpyridine)photosensitizer covalently linked to electron donor and acceptor groups. // Inorg. Chem. 1991.
- V. 30. - P. 4230-4238.28. C.A. Howard, M.D. Ward. Stepwise synthesis of binuclear photoactive complexes with abridging 3,4-dihydroxyphenylterpyridine ligand. // Angew. Chem. Int. Ed. Engl. - 1992. V. 31. - P. 1028-1030.29. B. Whittle, N.S. Everest, C. Howard, M.D. Ward Synthesis and electrochemical andspectroscopic properties of a series of binuclear and trinuclear ruthenium and palladiumcomplexes based on a new bridging ligand containing terpyridyl and catechol binding sites. //Inorg. Chem.
- 1995. - V. 34. - P. 2025-2032.30. M.T. Indelli, C.A. Bignozzi, F. Scandola, J.-P. Collin. Design of long-lived Ru(II) terpyridineMLCT states. Tricyano terpyridine complexes. // Inorg. Chem. - 1998. - V. 37. - P. 6084-6089.31. C.R. Rice, M.D. Ward, M.K. Nazeeruddin, M. Grätzel. Catechol as an efficient anchoringgroup for attachment of ruthenium. Polypyridine photosensitisers to solar cells based onnanocrystalline TiO2 films.
// New J. Chem. - 2000. - V. 24. - P. 651-652.32. J.M. Haider, M. Chavarot, S. Weidner, I. Sadler, R.M. Williams, L. De Cola, Z. Pikramenou.Metallocyclodextrins as building blocks in noncovalent assemblies of photoactive units for thestudy of photoinduced intercomponent processes. // Inorg. Chem. - 2001. - V. 40. - P. 3912-3921.33. C. Mikel, P.G. Potvin. Synthesis and enhanced photosensitization ability of a 4-carboxy2,2':6',2''-terpyridine complex of ruthenium(II) // Polyhedron – 2002. - V.
21. - P. 49–54.34. P. Lainé, F. Bedioui, P. Ochsenbein, V. Marvaud, M. Bonin, E. Amouyal. A new class offunctionalized terpyridyl ligands as building blocks for photosensitized supramolecular103architectures. Synthesis, structural, and electronic characterizations. // J.
Am. Chem. Soc. 2002. - V. 124. - P. 1364-1377.35. S. Vaduvescu, P.G. Potvin. Linear multinuclear RuII photosensitizers. // Eur. J. Inorg. Chem. 2004. - P. 1763-1769.36. S.H. Wadman, Y.M. van Leeuwen, Remco W.A. Havenith, G.P.M. van Klink, G. van Koten.A redox asymmetric, cyclometalated ruthenium dimer: toward up conversion dyes in dyesensitized TiO2 solar cells. // Organometallics – 2010.
- V. 29. - P. 5635–5645.37. E.C. Constable, R.-A. Fallahpour. Hydrogen-bond recognition of nucleosides by oligopyridineligands and their ruthenium complexes. // J. Chem. Soc., Dalton Trans. - 1996. - P. 2389-2390.38. M. Vrábel, M. Hocek, L. Havran, M. Fojta, I. Votruba, B. Klepetářová, R.
Pohl, L. Rulíšek,L. Zendlová, P. Hobza, I. Shih, E. Mabery, R. Mackman. Purines bearing phenanthroline orbipyridine ligands and their RuII complexes in position 8 as model compounds forelectrochemical DNA labeling – synthesis, crystal structure, electrochemistry, quantum chemicalcalculations, cytostatic and antiviral activity. // Eur. J. Inorg. Chem. - 2007.
- P. 1752–1769.39. M. Vrábel, R. Pohl, I. Votruba, M. Sajadi, S.A. Kovalenko, N.P. Ernsting, M. Hocek. Synthesisand photophysical properties of 7-deaza-2-deoxyadenosines bearing bipyridine ligands andtheir Ru(II)-complexes in position 7. // Org. Biomol. Chem. - 2008. - V. 6. - P. 2852–2860.40. A. Anthonysamy, S. Balasubramanian, V. Shanmugaiah, N. Mathivanan. Synthesis,characterization and electrochemistry of 4'-functionalized 2,2':6',2''-terpyridine ruthenium(II)complexes and their biological activity.
// Dalton Trans. - 2008. - P. 2136-2143.41. A. Jain, J. Wang, E.R. Mashack, B.S.J. Winkel, K.J. Brewer. Multifunctional DNA interactionsof Ru-Pt mixed metal supramolecular complexes with substituted terpyridine ligands. //Inorg. Chem. - 2009. - V. 48. - P. 9077–9084.42. M.N. Patel, P.A. Parmar, D.S. Gandhi, V.R. Thakkar. Antimicrobial and nuclease activity of mixedpolypyridyl ruthenium(II) complexes.
// Inorg. Chem. Commun. - 2010. - V. 13. - P. 1480–1484.43. M.N. Patel, D.S. Gandhi, P.A. Parmar. Effect of substituent of terpyridines on the DNAinteraction of polypyridyl ruthenium(II) complexes. // Spectrochim. Acta, Part A – 2011.V. 84. - P. 243– 248.44. G. Schmid, M. Baumle, M. Greekens, I.
Heim, C. Osemann, T. Sawitowski. Current andfuture application of nanoclusters. // Chem. Soc. Rev. – 1999. – V. 28. – P. 179-185.45. A.C. Templeton, W.P. Wuelfing, R.W. Murray. Monolayer-protected cluster molecules. //Acc. Chem. Res. – 2000. – V. 33. – P. 27-36.46. M.-C. Daniel, D. Astruc. Gold nanoparticles: assembly, supramolecular chemistry, quantumsize-related properties, and applications toward biology, catalysis, and nanotechnology.
//Chem. Rev. – 2004. – V. 104. – P. 293-346.10447. P.V. Kamat. Photophysical, photochemical and photocatalytic aspects of metal nanoparticles. //J. Phys. Chem. B. – 2002. – V. 106 – P. 7729-7744.48. M. Montali, L. Prodi, N. Zacceroni, M. Beltrane, T. Morroti, S. Quici. Stabilization ofterpyridine covered gold nanoparticles by metal ions complexation.
// New J. Chem. – 2007. –V. 31. – P. 102-108.49. K. Torigoe, K. Esumi. Preparation and catalytic effect of gold nanoparticles in waterdissolving carbon disulfide. // J. Phys. Chem. B. – 1999. – V. 103. – P. 2862-2866.50. R. Resch, C. Baur, A. Bugacov, B.E. Koel, P.M. Echternach, A. Madhukar, N. Montoya,A.A.G. Requicha, P. Will. Linking and manipulation of gold multinanoparticle structures usingdithiols and scanning force microscopy.
// J. Phys. Chem. B. – 1999. – V. 103. – P. 3647-3650.51. O. Tzhayik, P. Sawant, S. Efrima, E. Kovalev, J.T. Klug. Xanthate capping of silver, copper,and gold colloids. // Langmuir. – 2002. – V. 18. – P. 3364-3369.52. Y. Tan, Y. Li, D. Zhu. Fabrication of gold nanoparticles using a trithiol (thiocyanuric acid) asthe capping agent. // Langmuir. – 2002. – V. 18. – P. 3392-3395.53.
Y.-T. Chan, S. Li, C.N. Moorefield, P. Wang, C.D. Shreiner, G.R. Newkome. Self-assembly,disassembly, and reassembly of gold nanorods mediated by bis(terpyridine)–metalconnectivity. // Chem. Eur. J. - 2010. - V. 16. - P. 4164 – 4168.54. J. Kumar, K.G. Thomas. Surface-enhanced Raman spectroscopy: investigations at the nanorodedges and dimer junctions. // J.
Phys. Chem. Lett. - 2011. - V. 2 - P. 610–615.55. F. Kröhnke. The specific synthesis of pyridines and oligopyridines. // Synthesis - 1976. - P. 1-24.56. W. Spahni, G. Calzaferri. Synthese von para-substituierten Phenyl-Terpyridin Liganden. //Helv. Chim. Acta – 1984. - V. 67. - P.
450-454.57. G.D. Storrier, S.B. Colbran. Transition-metal complexes of 4'-(4-anilino)-2,2':6',2"-terpyridine(and derivatives): versatile building blocks for construction of metallooligomers andmacromolecules. // J. Chem. Soc., Dalton Trans. - 1996. - P. 2185-2186.58. G.D. Storrier, S.B. Colbran, D.C. Craig.
Bis[4'-(4-anilino)-2,2':6',2''-terpyridine]transitionmetal complexes: electrochemically active monomers with a range of magnetic and opticalproperties for assembly of metallo oligomers and macromolecules. // J. Chem. Soc., DaltonTrans. - 1997.
- P. 3011–3028.59. C. Patoux, J.-P. Launay, M. Beley, S. Chodorowski-Kimmes, J.-P. Collin, S. James,J.-P. Sauvage. Long-range electronic coupling in bis(cyclometalated) ruthenium complexes. //J. Am. Chem. Soc. - 1998. - V. 120. - P. 3717-3725.60. G.D. Storrier, S.B. Colbran. A simple route to bis(terpyridyl)transition metal oligomers. //Inorg. Chim.
Acta – 1999. - V. 284 – P. 76-84.10561. E.C. Constable, A.M.W. Cargill Thompson. Multinucleating 2,2':6',2''-terpyridine ligands asbuilding blocks for the assembly of co-ordination polymers and oligomers. // J. Chem. Soc.,Dalton Trans.
- 1992. - P. 3467-3475.62. E.C.Constable,M.Neuburger,D.R.Smith,M.Zehnder.4'-(4-Fluorophenyl)-2,2':6',2''-terpyridine - an aryl-2,2':6',2''-terpyridine with an electron-releasing aryl substituent. //lnorg. Chim. Acta – 1998. - V. 275-276. - P. 359-365.63. D.P. Harrison, A.M. Lapides, R.A. Binstead, J.J. Concepcion, M.A.
Méndez, D.A. Torelli,J.L. Templeton, T.J. Meyer. Coordination chemistry of single-site catalyst precursors inreductively electropolymerized vinylbipyridine films. // Inorg. Chem. - 2013. - V. 52. P. 4747−4749.64. I. Eryazici, G.R. Newkome. Construction of hexanuclear macrocycles by a coupling strategyfrom polyfunctionalized bis(terpyridines). // New J. Chem. - 2009. - V. 33. - P.
345–357.65. E.A. Alemán, C.D. Shreiner, C.S. Rajesh, T. Smith, S.A. Garrison, D.A. Modarelli.Photoinduced electron-transfer within osmium(II) and ruthenium(II) bis-terpyridine donoracceptor dyads. // Dalton Trans. - 2009. - P. 6562–6577.66. C.B. Smith, C.L. Raston, A.N. Sobolev. Poly(ethyleneglycol) (PEG): a versatile reaction mediumin gaining access to 4'-(pyridyl)-terpyridines. // Green Chem. - 2005. - V. 7. - P.
650–654.67. A. Winter, D.A.M. Egbe, U.S. Schubert. Rigid π-conjugated mono-, bis-, andtris(2,2':6',2''-terpyridines). // Org. Lett. - 2007. - V. 9. - P. 2345-2348.68. X. Zhang, D. Li, X.-P. Zhou. From large 3D assembly to highly dispersed spherical assembly:weak and strong coordination mediated self-aggregation of Au colloids. // New J. Chem. 2006. - V. 30.