[1] FARGES J P. Organic Conductors: Fundamentals and Applications[M\]. New York: Marcel Dekker Inc, 1994.
[2] GOTO M, ICHINOSE N, KAWANISHI S, et al. Laser implantation of molecular aggregates into poly (methyl methacrylate)[J\]. Appl Surf Sci, 1999, 138/139: 471-476.
[3] SERPONE N, KHAIRUTDINOV R F. Laserinduced light attenuation in solutions of porphyrin aggregates[J\]. J Phys Chem, 1995, 99: 1195211958.
[4] YU H Z, BASKIN J S, ZEWAIL A H. Ultrafast dynamics of porphyrins in the condensed phase: II. zinc tetraphenylporphyrin[J\]. J Phys Chem A, 2002, 106: 9845-9854.
[5] OKADA S, SEGAWA H. Substituentcontrol exciton in Jaggregates of protonated waterinsoluble porphyrins[J\]. J Am Chem Soc, 2003, 125(9): 27922796.
[6] LI Y, HAN W W, LIAO M X. Spectroscopic and crystal structural analyses of zinc (II) tetraphenylporphyrin Jaggregates[J\]. Acta PhysicoChimica Sinica, 2009, 25: 2493-2500.
[7] ZHANG X L, CHEN L G, LYU P, et al. Fluorescence decay of quasimonolayered porphyrins near a metal surface separated by shortchain alkanethiols[J\]. Appl Phys Lett, 2008, 92: 223118.
[8] QUIMBY D J, LONGO F R. Luminescence studies on several tetraarylporphins and their zinc derivatives[J\]. J Am Chem Soc, 1975, 97: 5111-5117.
[9] DRAIN C M, BATTEAS J D, FLYNN G W, et al. Designing supramolecular porphyrin arrays that self organize into nanoscale optical and magnetic materials[J\]. Proc Natl Acad Sci USA, 2002, 99: 6498-6502.
[10] IMAHORI H, MORI Y, MATANO Y. Nanostructured artificial photosynthesis[J\]. J Photochem Photobio C, 2003(4): 51-83.
[11] AMAO Y, OKURA I. Hydrogen evolution using photoinduced electron transfer in water soluble bisviologenlinked cationic zinc porphyrin[J\]. J Mole Cata A, 1999, 145: 51-59.
[12] VOLLE J N, CHMBON G, SAYAH A, et al. Enhanced sensitivity detection of protein immobilization by fluorescent interference on oxidized silicon[J\]. Biosens Bioelectron, 2003, 19: 457-464.
[13] ZHANG J, MALIEKA J, GRYCZYNSKI I, et al. Oligonucleotidedisplaced organic monolayerprotected silver nanoparticles and enhanced luminescence of their salted aggregates[J\]. Analytical Biochemistry, 2004, 330: 81-86.
[14] LI Y. Solvent effects on photophysical properties of copper and zinc porphyrins[J\]. Chin Sci Bull, 2008, 23: 3615-3619.
[15] HAMAL S, TAMAL N, MASUHARA H. Excimer formation of pyrene in a solid/polymer solution interface layer. A timeresolved total internal reflection fluorescence study[J\]. J Phys Chem, 1995, 99: 4980-4985.
[16] SUTO S, IKEHARA T, UCHIDA W, et al. Luminescence decay time of thin tetraphenyl porphyrin films evaporated on au substrate: The role of electronic energy transfer[J\]. Solid State Communications, 1990, 73: 331-334.
[17] FRANPTON M J, MAGENIIS S W, PILLOW J N G, et al. The effect of intermolecular interactions on the electrooptical properties of porphyrin dendrimers with conjugated dendrons[J\]. J Mater Chem, 2003, 13: 235-242. |