Artículo

Cadranel, A.; Aramburu Trošelj, B.M.; Yamazaki, S.; Alborés, P.; Kleiman, V.D.; Baraldo, L.M. "Emissive cyanide-bridged bimetallic compounds as building blocks for polymeric antennae" (2013) Dalton Transactions. 42(48):16723-16732
Estamos trabajando para incorporar este artículo al repositorio
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

A series of cyanide-bridged bimetallic compounds of the general formula [Ru(L)(bpy)(μ-NC)(M)]2-/-/2+ (L = tpy, 2,2′-6′, 2′′-terpyridine, or tpm, tris(1-pyrazolyl)methane, bpy = 2,2′-bipyridine, M = RuII(CN)5, Os III(CN)5, OsII(CN)5, Ru II(py)4(CN), py = pyridine) have been synthesized and fully characterized. Most of them present MLCT emission (λ = 690-730 nm, Φ = 10-3-10-4) and their photophysical properties resemble the ones of the respective mononuclear Ru(L)(bpy) species. The exception is when M is OsIII(CN)5, where an intramolecular electron transfer quenching mechanism is proposed. The conditions that should be met for avoiding the reductive or oxidative quenching of the excited state are also discussed. © 2013 The Royal Society of Chemistry.

Registro:

Documento: Artículo
Título:Emissive cyanide-bridged bimetallic compounds as building blocks for polymeric antennae
Autor:Cadranel, A.; Aramburu Trošelj, B.M.; Yamazaki, S.; Alborés, P.; Kleiman, V.D.; Baraldo, L.M.
Filiación:Departamento de Química Analítica, Inorgánica y Química Física, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, C1428EHA Buenos Aires, Argentina
Department of Chemistry, University of Florida, Gainesville FL 32611-7200, United States
Palabras clave:Bimetallic compound; Bipyridines; Building blockes; Cyanide-bridged; General formulas; Intra-molecular electron transfer; Photophysical properties; Terpyridines; Cyanides; Methane; Osmium; Synthesis (chemical); Rubidium compounds
Año:2013
Volumen:42
Número:48
Página de inicio:16723
Página de fin:16732
DOI: http://dx.doi.org/10.1039/c3dt51164b
Título revista:Dalton Transactions
Título revista abreviado:Dalton Trans.
ISSN:14779226
CODEN:DTARA
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_14779226_v42_n48_p16723_Cadranel

Referencias:

  • Hagfeldt, A., Boschloo, G., Sun, L., Kloo, L., Pettersson, H., (2010) Chem. Rev., 110, pp. 6595-6663
  • Yin, J.-F., Velayudham, M., Bhattacharya, D., Lin, H.-C., Lu, K.-L., (2012) Coord. Chem. Rev., 256, pp. 3008-3035
  • Balzani, V., Credi, A., Venturi, M., (2008) ChemSusChem, 1, pp. 26-58
  • Alstrum-Acevedo, J.H., Brennaman, M.K., Meyer, T.J., (2005) Inorg. Chem., 44, pp. 6802-6827
  • Chakraborty, S., Wadas, T.J., Hester, H., Schmehl, R., Eisenberg, R., (2005) Inorg. Chem., 44, pp. 6865-6878
  • Balzani, V., Sebastiano, B., Ciamician, C.G., Bologna, U., Inorganica, C., Analitica, C., Fisica, C., Puntoriero, F., (2007) Photochemistry and Photophysics of Coordination Compounds i, 280. , in, ed. V. Balzani and S. Campagna, Springer-Verlag, Berlin, 1-36
  • Bignozzi, C.A., Roffia, S., Chirboli, C., Davila, J., Indelli, M.T., Scandola, F., (1989) Inorg. Chem., 28, pp. 4350-4358
  • Scandola, F., Argazzi, R., Bignozzi, C.A., Chiorboli, C., Indelli, M.T., Rampi, M.A., (1993) Coord. Chem. Rev., 125, pp. 283-292
  • Cadranel, A., Alborés, P., Yamazaki, S., Kleiman, V.D., Baraldo, L.M., (2012) Dalton Trans., 41, pp. 5343-5350
  • Krause, A., (1986) Inorg. Chim. Acta, 113, pp. 161-162
  • Gentil, L.A., Navaza, A., Olabe, J.A., Rigotti, G.E., (1991) Inorg. Chim. Acta, 179, pp. 89-96
  • Alborés, P., Slep, L.D., Baraldo, L.M., Baggio, R., Garland, M.T., Rentschler, E., (2006) Inorg. Chem., 45, pp. 2361-2363
  • Coe, B.J., Meyer, T.J., White, P.S., (1995) Inorg. Chem., 34, pp. 3600-3609
  • Llobet, A., Doppelt, P., Meyer, T.J., (1988) Inorg. Chem., 27, pp. 514-520
  • Takeuchi, K.J., Thompson, M.S., Pipes, D.W., Meyer, T.J., (1984) Inorg. Chem., 23, pp. 1845-1851
  • Armarego, W.L.F., Perrin, D.D., (1996) Purification of Laboratory Chemicals, , Butterworth-Heinemann, Oxford, U.K., 4th edn
  • Noviandri, I., Brown, K.N., Fleming, D.S., Gulyas, P.T., Lay, P.A., Masters, A.F., Phillips, L., (1999) J. Phys. Chem. B, 103, pp. 6713-6722
  • Yamamoto, Y., Tamaki, Y., Yui, T., Koike, K., Ishitani, O., (2010) J. Am. Chem. Soc., 132, pp. 11743-11752
  • Lebon, E., Dixon, I.M., Vendier, L., Igau, A., Sutra, P., (2007) Inorg. Chim. Acta, 360, pp. 1235-1239
  • Dixon, I.M., Lebon, E., Loustau, G., Sutra, P., Vendier, L., Igau, A., Juris, A., (2008) Dalton Trans., pp. 5627-5635
  • Yang, X.-J., Drepper, F., Wu, B., Sun, W.-H., Haehnel, W., Janiak, C., (2005) Dalton Trans., pp. 256-267
  • Nagao, H., Mizukawa, T., Tanaka, K., (1994) Inorg. Chem., pp. 3415-3420
  • Adcock, P.A., Keene, F.R., Smythe, R.S., Snow, M.R., (1984) Inorg. Chem., 23, pp. 2336-2343
  • Rasmussen, S.C., Ronco, S.E., Mlsna, D.A., Billadeau, M.A., Pennington, W.T., Kolis, J.W., Petersen, J.D., (1995) Inorg. Chem., 34, pp. 821-829
  • Katz, N.E.N., Romero, I., Llobet, A., Parella, T., Benet-Buchholz, J., (2005) Eur. J. Inorg. Chem., 2005, pp. 272-277
  • Videla, M., Jacinto, J.S., Baggio, R., Garland, M.T., Singh, P., Kaim, W., Slep, L.D., Olabe, J.A., (2006) Inorg. Chem., 45, pp. 8608-8617
  • Hartshorn, R.M., Zibaseresht, R., (2006) ARKIVOC, 3, pp. 104-126
  • Coe, B.J., Meyer, J.T.J., White, P.S., Meyer, T.J., (1995) Inorg. Chem., 34, pp. 593-602
  • Pieslinger, G.E., Alborés, P., Slep, L.D., Coe, B.J., Timpson, C.J., Baraldo, L.M., (2013) Inorg. Chem., 52, pp. 2906-2917
  • Alborés, P., Slep, L.D., Weyhermüller, T., Baraldo, L.M., Weyhermuller, T., (2004) Inorg. Chem., 43, pp. 6762-6773
  • Rossi, M.B., Abboud, K.A., Alborés, P., Baraldo, L.M., (2010) Eur. J. Inorg. Chem., pp. 5613-5616
  • Peters, J.C., Baraldo, L.M., Baker, T.A., Johnson, A.R., Cummins, C.C., (1999) J. Organomet. Chem., 591, pp. 24-35
  • Timpson, C.J., Bignozzi, C.A., Sullivan, B.P., Kober, E.M., Meyer, T.J., (1996) J. Phys. Chem., 100, pp. 2915-2925
  • Rossi, M.B., Alborés, P., Baraldo, L.M., (2011) Inorg. Chim. Acta, 374, pp. 334-340
  • Macatangay, A.V., Endicott, J.F., (2000) Inorg. Chem., 39, pp. 437-446
  • Mulliken, R.S., (1952) J. Am. Chem. Soc., 74, pp. 811-824
  • Hush, N.S., (1967) Prog. Inorg. Chem., 8, pp. 391-444
  • Hush, N.S., (1968) Electrochim. Acta, 13, pp. 1005-1023
  • Albert, C., Bignozzi, C.A., Roffia, S., Scandola, F., (1985) J. Am. Chem. Soc., 107, pp. 1644-1651
  • Cutin, E.H., Katz, N.E., (1993) Polyhedron, 12, pp. 955-960
  • Siddiqui, S., Henderson, W.W., Shepherd, R.E., (1987) Inorg. Chem., 26, pp. 3101-3107
  • Watzky, M.A., Macatangay, A.V., Vancamp, R.A., Mazzetto, S.E., Song, X.Q., Endicott, J.F., Buranda, T., (1997) J. Phys. Chem. A, 101, pp. 8441-8459
  • Wong, C.-Y., Chan, M.C.W., Zhu, N., Che, C.-M., (2004) Organometallics, 23, pp. 2263-2272
  • Belser, P., Von Zelewsky, A., Juris, A., Barigelletti, F., Balzani, V., (1985) Gazz. Chim. Ital., 115, pp. 723-729
  • Bignozzi, C.A., Paradisi, C., Roffia, S., Scandola, F., (1988) Inorg. Chem., 27, pp. 408-414
  • Ponce, A., Bachrach, M., Farmer, P., (1996) Inorg. Chim. Acta, 243, pp. 135-140

Citas:

---------- APA ----------
Cadranel, A., Aramburu Trošelj, B.M., Yamazaki, S., Alborés, P., Kleiman, V.D. & Baraldo, L.M. (2013) . Emissive cyanide-bridged bimetallic compounds as building blocks for polymeric antennae. Dalton Transactions, 42(48), 16723-16732.
http://dx.doi.org/10.1039/c3dt51164b
---------- CHICAGO ----------
Cadranel, A., Aramburu Trošelj, B.M., Yamazaki, S., Alborés, P., Kleiman, V.D., Baraldo, L.M. "Emissive cyanide-bridged bimetallic compounds as building blocks for polymeric antennae" . Dalton Transactions 42, no. 48 (2013) : 16723-16732.
http://dx.doi.org/10.1039/c3dt51164b
---------- MLA ----------
Cadranel, A., Aramburu Trošelj, B.M., Yamazaki, S., Alborés, P., Kleiman, V.D., Baraldo, L.M. "Emissive cyanide-bridged bimetallic compounds as building blocks for polymeric antennae" . Dalton Transactions, vol. 42, no. 48, 2013, pp. 16723-16732.
http://dx.doi.org/10.1039/c3dt51164b
---------- VANCOUVER ----------
Cadranel, A., Aramburu Trošelj, B.M., Yamazaki, S., Alborés, P., Kleiman, V.D., Baraldo, L.M. Emissive cyanide-bridged bimetallic compounds as building blocks for polymeric antennae. Dalton Trans. 2013;42(48):16723-16732.
http://dx.doi.org/10.1039/c3dt51164b