A Light‐Induced Molecular Shuttle Based on a [2]Rotaxane‐Derived Triad
暂无分享,去创建一个
[1] N. Mataga,et al. Charge recombination process of ion pair state produced by excitation of charge-transfer complex in acetonitrile solution. Essentially different character of its energy gap dependence from that of geminate ion pair formed by encounter between fluorescer and quencher , 1989 .
[2] H. Miyasaka,et al. Mechanisms of the strongly exothermic charge separation reaction in the excited singlet state. Picosecond laser photolysis studies on aromatic hydrocarbon-tetracyanoethylene and aromatic hydrocarbon-pyromellitic dianhydride systems in polar solutions , 1988 .
[3] R. Pannier,et al. Über Ferrocenderivate. VIII. Die Darstellung von monomeren und polymeren Ferrocenylenoxadiazolen , 1967 .
[4] Michael R. Wasielewski,et al. Photoinduced electron transfer in supramolecular systems for artificial photosynthesis , 1992 .
[5] David J. Williams,et al. Cyclobis(paraquat‐p‐phenylen), ein tetrakationischer Mehrzweckrezeptor , 1988 .
[6] D. Dlott,et al. Electron transfer and back electron transfer in photoexcited ion pairs: forward and back directions have different maximum rates , 1991 .
[7] David J. Williams,et al. Molecular meccano. 1. [2]Rotaxanes and a [2]catenane made to order , 1992 .
[8] J. Kochi,et al. Contact ion pairs. Picosecond dynamics of solvent separation, internal return, and special salt effect , 1992 .
[9] D. Huppert,et al. The transition from non-adiabatic to solvent controlled adiabatic electron transfer kinetics. An experimental study , 1990 .
[10] J. F. Stoddart,et al. Charge recombination in cyclophane-derived, intimate radical ion pairs , 1993 .
[11] K. Honda,et al. Photoinduced electron-transfer reactions of porphyrin heteroaggregates: energy gap dependence of an intradimer charge recombination process , 1992 .
[12] David J. Williams,et al. Cyclobis(paraquat‐p‐phenylene). A Tetracationic Multipurpose Receptor , 1988 .
[13] Rudolph A. Marcus,et al. On the Theory of Electron-Transfer Reactions. VI. Unified Treatment for Homogeneous and Electrode Reactions , 1965 .
[14] Ian R. Gould,et al. Electron-Transfer Reactions in the Marcus Inverted Region: Differences in Solvation and Electronic Coupling between Excited Charge-Transfer Complexes and Geminate Radical Ion Pairs , 1988 .
[15] A. Harriman,et al. Laser spectroscopy of porphyrin-azaaromatic ion pairs: influence of molecular dimensions on the rate of charge recombination , 1992 .