Fluorescence and 1O2 generation properties of porphyrin molecules immobilized in oxidized nano-porous silicon matrix

被引:24
作者
Chirvony, V.
Bolotin, V.
Matveeva, E.
Parkhutik, V.
机构
[1] Natl Acad Sci, Inst Mol & Atom Phys, Minsk 220072, BELARUS
[2] Univ Politecn Valencia, R&D Ctr Mat & Technol Microfabricat, Valencia 46022, Spain
关键词
porphyrins; nano-structured porous silicon; photoluminescence; generation of singlet oxygen;
D O I
10.1016/j.jphotochem.2005.11.008
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Recently it has been shown that nano-porous silicon (pSi), synthetic material produced by electrochemical etching of monocrystalline silicon, is able to provide an efficient electronic energy transfer to molecular oxygen, thus producing singlet (i.e. excited) oxygen in gaseous and liquid environment that opens the possibilities for application of pSi in Photodynamic Therapy (PDT). Here, we study the photophysical properties, including an ability of singlet oxygen (O-1(2)) generation, of a modified psi matrix impregnated with cationic (TMPyP(4)) or anionic (TPPS) porphyrins, which are known as effective photosensitizers of O-1(2) production in solution. It is shown that a use of oxidized psi matrix instead of as-prepared one results in an increase of an ability of the porphyrins to be immobilized in the matrix by orders of magnitude. A matrix of pSi formed in (100)-oriented Si wafers ensures, after pSi oxidation, better uptake of porphyrins into the pores as compared with oxidized pSi(111). The fluorescence decay kinetics of the immobilized porphyrins are found to be non-exponential, and the effective fluorescence lifetime shortens with an increase of the porphyrin concentration. It evidences in favour of a moderate annihilation-type concentration quenching of the fluorescence rather than in favour of any quenching effect of oxidized pSi matrix. It opens perspectives for application of the hybrid material for O-1(2) generation. An ability of immobilized TMPyP(4) to generate O-1(2) is shown experimentally by direct O-1(2) luminescence measurements. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:106 / 113
页数:8
相关论文
共 34 条
[1]   The present and future role of photodynamic therapy in cancer treatment [J].
Brown, SB ;
Brown, EA ;
Walker, I .
LANCET ONCOLOGY, 2004, 5 (08) :497-508
[2]   LASER-DYE IMPREGNATION OF OXIDIZED POROUS SILICON ON SILICON-WAFERS [J].
CANHAM, LT .
APPLIED PHYSICS LETTERS, 1993, 63 (03) :337-339
[3]   SILICON QUANTUM WIRE ARRAY FABRICATION BY ELECTROCHEMICAL AND CHEMICAL DISSOLUTION OF WAFERS [J].
CANHAM, LT .
APPLIED PHYSICS LETTERS, 1990, 57 (10) :1046-1048
[4]   Bioactive polycrystalline silicon [J].
Canham, LT ;
Reeves, CL ;
King, DO ;
Branfield, PJ ;
Crabb, JG ;
Ward, MCL .
ADVANCED MATERIALS, 1996, 8 (10) :850-&
[5]   Photoionization of tetraphenylporphyrin in mesoporous SiMCM-48, AlMCM-48, and TiMCM-48 molecular sieves [J].
Chang, ZX ;
Kevan, L .
LANGMUIR, 2002, 18 (03) :911-916
[6]   Resonance Raman studies on ZnII tetraphenylporphyrin encapsulated into MCM-41 and CuIIAlMCM-41:: catalytic ionization of ZnIITPP and its central metal ion exchange [J].
Choi, JR ;
Yoon, M ;
Yim, YH ;
Jeoung, SC .
CHEMICAL PHYSICS LETTERS, 2002, 351 (5-6) :391-396
[7]   Encapsulation, stabilization, and catalytic properties of flexible metal porphyrin complexes in MCM-41 with minimal electronic perturbation by the environment [J].
Holland, BT ;
Walkup, C ;
Stein, A .
JOURNAL OF PHYSICAL CHEMISTRY B, 1998, 102 (22) :4301-4309
[8]   Aggregation of tetrakis(4-methylpyridyl)porphyrin and tetrakis(4-sulphonatophenyl)porphyrin in water [J].
Iosif, A ;
Grummt, UW .
JOURNAL FUR PRAKTISCHE CHEMIE-CHEMIKER-ZEITUNG, 1997, 339 (05) :420-425
[9]   A COMPARATIVE-STUDY OF THE INTERACTION OF 5,10,15,20-TETRAKIS (N-METHYLPYRIDINIUM-4-YL)PORPHYRIN AND ITS ZINC COMPLEX WITH DNA USING FLUORESCENCE SPECTROSCOPY AND TOPOISOMERIZATION [J].
KELLY, JM ;
MURPHY, MJ ;
MCCONNELL, DJ ;
OHUIGIN, C .
NUCLEIC ACIDS RESEARCH, 1985, 13 (01) :167-184
[10]   Excited-state dynamics of 5,10,15,20-tetraphenyl-21H,23H-porphine manganese(III) chloride encapsulated in TiMCM-41 and MCM-41;: Proved by fs-diffuse reflectance laser photolysis [J].
Kim, Y ;
Choi, JR ;
Yoon, M ;
Furube, A ;
Asahi, T ;
Masuhara, H .
JOURNAL OF PHYSICAL CHEMISTRY B, 2001, 105 (36) :8513-8518