Kinetic effects of tartaric acid on the growth of chiral J-aggregates of tetrakis(4-sulfonatophenyl)porphyrin.
暂无分享,去创建一个
[1] H. Segawa,et al. Magneto-chiral dichroism of organic compounds. , 2011, Angewandte Chemie.
[2] H. Ågren,et al. Hierarchical chiral expression from the nano- to mesoscale in synthetic supramolecular helical fibers of a nonamphiphilic C3-symmetrical π-functional molecule. , 2011, Journal of the American Chemical Society.
[3] V. Villari,et al. Scaling the chirality in porphyrin J-nanoaggregates. , 2011, Journal of the American Chemical Society.
[4] R. Purrello,et al. Vortexes and nanoscale chirality. , 2010, Angewandte Chemie.
[5] R. Augulis,et al. Localization and transport of excitation energy in inhomogeneous supramolecular arrays , 2010 .
[6] G. Mancini,et al. Chiral sign selection on the J-aggregates of diprotonated tetrakis-(4-sulfonatophenyl)porphyrin by traces of unidentified chiral contaminants present in the ultra-pure water used as solvent. , 2009, Chirality.
[7] R. Purrello,et al. Reversible "chiral memory" in ruthenium tris(phenanthroline)-anionic porphyrin complexes. , 2008, Angewandte Chemie.
[8] R. Bozio,et al. Influence of Excitonic Interactions on the Transient Absorption and Two-Photon Absorption Spectra of Porphyrin J-Aggregates in the NIR Region , 2007 .
[9] V. Villari,et al. From fractal to nanorod porphyrin J-aggregates. Concentration-induced tuning of the aggregate size. , 2006, The journal of physical chemistry. B.
[10] N. Micali,et al. Unusual optical properties of porphyrin fractal J-aggregates. , 2005, Chemical communications.
[11] R. Bozio,et al. Strong enhancement of the two-photon absorption of tetrakis(4-sulfonatophenyl)porphyrin diacid in water upon aggregation. , 2005, The journal of physical chemistry. B.
[12] M. Tabak,et al. Small angle X-ray scattering study of meso-tetrakis (4-sulfonatophenyl) porphyrin in aqueous solution: a self-aggregation model. , 2003, Biophysical journal.
[13] V. Villari,et al. Structural Rearrangements in 5,10,15,20-Tetrakis(4-sulfonatophenyl)porphyrin J-Aggregates under Strongly Acidic Conditions , 2003 .
[14] N. Periasamy,et al. Self-Assembly of Template-Directed J-Aggregates of Porphyrin , 2003 .
[15] E. Gibbs,et al. Aggregation kinetics of extended porphyrin and cyanine dye assemblies. , 2000, Biophysical journal.
[16] N. Micali,et al. Mesoscopic Structure of meso-Tetrakis(4-sulfonatophenyl)porphine J-Aggregates , 2000 .
[17] E. Gibbs,et al. Resonance Light Scattering and Its Application in Determining the Size, Shape, and Aggregation Number for Supramolecular Assemblies of Chromophores , 1999 .
[18] E. Gibbs,et al. A Nonconventional Approach To Supramolecular Formation Dynamics: The Kinetics Of Assembly Of DNA-Bound Porphyrins , 1998 .
[19] N. Maiti,et al. J- and H-aggregates of porphyrin-surfactant complexes: time-resolved fluorescence and other spectroscopic studies , 1998 .
[20] D. Akins,et al. Absorption and Raman Scattering by Aggregated meso-Tetrakis(p-sulfonatophenyl)porphine , 1994 .
[21] J. Crusats,et al. Aggregation in water solutions of tetrasodium diprotonated meso-tetrakis(4-sulfonatophenyl)porphyrin , 1994 .
[22] Y. Kaizu,et al. J‐aggregate formation of a water‐soluble porphyrin in acidic aqueous media , 1993 .