Photoinduced electron-transfer in supramolecular complex of zinc porphyrin with poly(amido amine) dendrimer donor
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[1] M. Calvin,et al. Photochemical Studies of the Porphyrins. III. Photoreduction of a Porphyrin by Benzoin , 1955 .
[2] D. Mauzerall. THE PHOTOREDUCTION OF PORPHYRINS AND THE OXIDATION OF AMINES BY PHOTO-EXCITED DYES , 1960 .
[3] D. Mauzerall. The Photoreduction of Porphyrins: Structure of the Products , 1962 .
[4] G. R. Seely,et al. PHOTOREDUCTION OF ZINC PORPHIN BY ASCORBIC ACID* , 1964 .
[5] R. Cookson,et al. Photochemical addition of amines to styrenes , 1969 .
[6] M. Tachiya,et al. Theory of diffusion‐controlled reactions on spherical surfaces and its application to reactions on micellar surfaces , 1981 .
[7] M. Neumann-Spallart,et al. Photophysical and redox properties of water-soluble porphyrins in aqueous media , 1982 .
[8] N. Sutin. Nuclear, electronic, and frequency factors in electron transfer reactions , 1982 .
[9] A. Harriman,et al. Metal phthalocyanines and porphyrins as photosensitizers for reduction of water to hydrogen , 1982 .
[10] P. Neta,et al. Spectrophotometric and kinetic studies of the radiolytic reduction of several pyridylporphyrins and their metal complexes , 1984 .
[11] James R. Dewald,et al. A New Class of Polymers: Starburst-Dendritic Macromolecules , 1985 .
[12] William A. Goddard,et al. Starburst dendrimers. 5. Molecular shape control , 1989 .
[13] William A. Goddard,et al. Starburst Dendrimers: Molecular‐Level Control of Size, Shape, Surface Chemistry, Topology, and Flexibility from Atoms to Macroscopic Matter , 1990 .
[14] N. Turro,et al. Photoinduced electron-transfer reactions to probe the structure of starburst dendrimers , 1990 .
[15] John M. Warman,et al. Charge migration in supramolecular stacks of peripherally substituted porphyrins , 1991, Nature.
[16] N. Turro,et al. Photophysical investigation of similarities between starburst dendrimers and anionic micelles , 1991 .
[17] Andrew Gilbert,et al. Essentials of Molecular Photochemistry , 1991 .
[18] F. D. De Schryver,et al. Time-resolved fluorescence quenching in micellar assemblies , 1993 .
[19] A. Bard,et al. High-Density Nanosecond Charge Trapping in Thin Films of the Photoconductor ZnODEP , 1993, Science.
[20] Raymond Bonnett,et al. Photosensitizers of the porphyrin and phthalocyanine series for photodynamic therapy , 1995 .
[21] Allen J. Bard,et al. Artificial Photosynthesis: Solar Splitting of Water to Hydrogen and Oxygen , 1995 .
[22] P. Barbara,et al. Contemporary Issues in Electron Transfer Research , 1996 .
[23] T. Aida,et al. Morphology-Dependent Photochemical Events in Aryl Ether Dendrimer Porphyrins: Cooperation of Dendron Subunits for Singlet Energy Transduction , 1998 .
[24] A. Suzuki,et al. Preparation of Gold Colloids with UV Irradiation Using Dendrimers as Stabilizer , 1998 .
[25] Lajos P. Balogh,et al. Poly(Amidoamine) Dendrimer-Templated Nanocomposites. 1. Synthesis of Zerovalent Copper Nanoclusters , 1998 .
[26] Jia-cong Shen,et al. Investigation of self-assembled dendrimer complexes , 1999 .
[27] K. Takagi,et al. Clay minerals as photochemical reaction fields , 2000 .
[28] B. Bauer,et al. Dendrimer Templates for the Formation of Gold Nanoclusters , 2000 .
[29] E. W. Meijer,et al. The dynamics of electronic energy transfer in novel multiporphyrin functionalized dendrimers: A time-resolved fluorescence anisotropy. , 2000 .
[30] Jean M. J. Fréchet,et al. Effect of Core Structure on Photophysical and Hydrodynamic Properties of Porphyrin Dendrimers , 2000 .
[31] A. Suzuki,et al. Role of Poly(amidoamine) Dendrimers for Preparing Nanoparticles of Gold, Platinum, and Silver , 2000 .
[32] T. Aida,et al. Polyion Complex Micelles Encapsulating Light-Harvesting Ionic Dendrimer Zinc Porphyrins , 2000 .
[33] D. Halfen,et al. Structural Effects on Intermolecular Electron Transfer Reactivity , 2000 .
[34] A. Suzuki,et al. Formation of Gold and Silver Nanoparticles in Aqueous Solution of Sugar-Persubstituted Poly(amidoamine) Dendrimers , 2000 .
[35] J. Tsuchiya,et al. A Laser Flash Photolysis Study on the Reaction Mechanisms of Benzil with Various Amines , 2000 .
[36] I. Yamazaki,et al. A Large Dendritic Multiporphyrin Array as a Mimic of the Bacterial Light-Harvesting Antenna Complex: Molecular Design of an Efficient Energy Funnel for Visible Photons. , 2001, Angewandte Chemie.
[37] B. Bauer,et al. Nanoparticle Formation within Dendrimer-Containing Polymer Networks: Route to New Organic−Inorganic Hybrid Materials , 2001 .
[38] R. Crooks,et al. Dendrimer-encapsulated metal nanoparticles: synthesis, characterization, and applications to catalysis. , 2001, Accounts of chemical research.
[39] S. Tucker,et al. Intrinsic Fluorescence of Carboxylate-Terminated Polyamido Amine Dendrimers , 2001 .
[40] H. Mihara,et al. Multipeptide-metalloporphyrin assembly on a dendrimer template and photoinduced electron transfer based on the dendrimer structure. , 2001, Chemistry.
[41] M. Grätzel. Photoelectrochemical cells : Materials for clean energy , 2001 .
[42] S. Costa,et al. Excited state quenching kinetics of zinc meso-tetrakis (N-methylpyridinium-4-yl) porphyrin by methyl viologen in AOT reverse micelles , 2002 .
[43] I. Yamazaki,et al. Dendritic multiporphyrin arrays as light-harvesting antennae: effects of generation number and morphology on intramolecular energy transfer. , 2002, Chemistry.
[44] K. Takagi,et al. Visible-Light Induced Charge-Separation between Consecutively Cast Porphyrin and Methyl Viologen Multilayered Titanoniobate Hybrid Films , 2002 .
[45] S. Costa,et al. Steady state and dynamic quenching of zinc tetramethylpyridylporphyrin by methyl viologen ion pairs. Salt effects , 2002 .
[46] R. Gronheid,et al. Porphyrin−Dendrimer Assemblies Studied by Electronic Absorption Spectra and Time-Resolved Fluorescence , 2003 .
[47] R. Crooks,et al. PREPARATION AND CHARACTERIZATION OF 1?2 NM DENDRIMER-ENCAPSULATED GOLD NANOPARTICLES HAVING VERY NARROW SIZE DISTRIBUTIONS , 2004 .
[48] Johannes A A W Elemans,et al. Self-assembled nanoreactors. , 2005, Chemical reviews.
[49] S. Costa,et al. Interactions in noncovalent PAMAM/TMPyP systems studied by fluorescence spectroscopy. , 2005, The journal of physical chemistry. B.
[50] Daniel G Nocera,et al. Hydrogen production by molecular photocatalysis. , 2007, Chemical reviews.
[51] J. Lopes,et al. Molecular dynamics simulations of charged dendrimers: low-to-intermediate half-generation PAMAMs. , 2007, The journal of physical chemistry. B.
[52] J. Lopes,et al. Molecular dynamics simulations of porphyrin-dendrimer systems: toward modeling electron transfer in solution. , 2008, The journal of physical chemistry. B.
[53] K. Sun,et al. Spontaneous Formation of Functionalized Dendrimer-Stabilized Gold Nanoparticles. , 2008, The journal of physical chemistry. C, Nanomaterials and interfaces.
[54] Takuzo Aida,et al. Dendrimer porphyrins and phthalocyanines. , 2009, Chemical reviews.
[55] Craig J. Medforth,et al. Self-assembled porphyrin nanostructures. , 2009, Chemical communications.
[56] C. R. Mayer,et al. A porphyrin-polyoxometallate bio-inspired mimic for artificial photosynthesis. , 2009, Physical chemistry chemical physics : PCCP.
[57] M. Wasielewski,et al. Self-assembly strategies for integrating light harvesting and charge separation in artificial photosynthetic systems. , 2009, Accounts of chemical research.
[58] S. Costa,et al. Single-Molecule Fluorescence of a Phthalocyanine in PAMAM Dendrimers Reveals Intensity−Lifetime Fluctuations from Quenching Dynamics , 2010 .
[59] E. Blart,et al. Accumulative charge separation inspired by photosynthesis. , 2010, Journal of the American Chemical Society.
[60] Michael Grätzel,et al. Solar water splitting: progress using hematite (α-Fe(2) O(3) ) photoelectrodes. , 2011, ChemSusChem.