PHOTOCATALYSIS OF OLIGO(PARA-PHENYLENES) - PHOTOCHEMICAL REDUCTION OF CARBON-DIOXIDE WITH TRIETHYLAMINE

被引:95
作者
MATSUOKA, S
KOHZUKI, T
PAC, C
ISHIDA, A
TAKAMUKU, S
KUSABA, M
NAKASHIMA, N
YANAGIDA, S
机构
[1] OSAKA UNIV,FAC ENGN,SUITA,OSAKA 565,JAPAN
[2] OSAKA UNIV,INST SCI & IND RES,SUITA,OSAKA 565,JAPAN
[3] OSAKA UNIV,INST LASER ENGN,SUITA,OSAKA 565,JAPAN
关键词
D O I
10.1021/j100190a057
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
Photoreduction of CO2 to formic acid (HCO2-) and a small quantity of carbon monoxide (CO) can be achieved in nonaqueous polar solvent by using oligo(p-phenylenes) (OPP-n) as a photocatalyst and triethylamine (TEA) as a sacrificial electron donor under > 290-nm irradiation, where the photocatalysis in N,N-dimethylformamide leads to the most effective formation of HCO2- and CO. Among OPP-n, OPP-3 and OPP-4 show high photocatalytic activity for the formation of HCO2-, in which the apparent quantum yields of HCO2- formation for OPP-3 and OPP-4 are 0.072 and 0.084, respectively. Although photocatalyst OPP-3 itself concurrently undergoes photo-Birch reduction during the photocatalysis, the turnover number for the formation of HCO2- based on the reacted OPP-3 is calculated to be 4, implying a cyclic activity of the reduction system. The laser flash photolysis and pulse radiolysis studies reveal that the photocatalysis initially starts from the reductive quenching of the singlet state of OPP-n by TEA followed by the formation of the radical anion of OPP-n, OPP-n.-, resulting in direct electron transfer from OPP-n.- to CO2 molecules.
引用
收藏
页码:4437 / 4442
页数:6
相关论文
共 46 条
[1]   LUMINESCENCE DECAY TIMES OF ULTRAVIOLET-EXCITED SCINTILLATOR SOLUTIONS [J].
AMATA, CD ;
BURTON, M ;
HELMAN, WP ;
LUDWIG, PK ;
RODEMEYE.SA .
JOURNAL OF CHEMICAL PHYSICS, 1968, 48 (05) :2374-&
[2]  
AMATORE C, 1981, J AM CHEM SOC, V103, P152
[3]  
[Anonymous], 1970, PHOTOPHYSICS AROMATI
[4]   PHOTO-REDUCTION OF CARBON-DIOXIDE AND WATER INTO FORMALDEHYDE AND METHANOL ON SEMICONDUCTOR-MATERIALS [J].
AURIANBLAJENI, B ;
HALMANN, M ;
MANASSEN, J .
SOLAR ENERGY, 1980, 25 (02) :165-170
[5]  
Barltrop J.A., 1973, PURE APPL CHEM, V33, P179, DOI 10.1351/pac197333020179
[6]   CHAIN-LENGTH DEPENDENCE OF ELECTRONIC AND ELECTROCHEMICAL PROPERTIES OF CONJUGATED SYSTEMS - POLYACETYLENE, POLYPHENYLENE, POLYTHIOPHENE, AND POLYPYRROLE [J].
BREDAS, JL ;
SILBEY, R ;
BOUDREAUX, DS ;
CHANCE, RR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1983, 105 (22) :6555-6559
[7]   HIGHLY CONDUCTING POLYPARAPHENYLENE, POLYPYRROLE, AND POLYTHIOPHENE CHAINS - AN ABINITIO STUDY OF THE GEOMETRY AND ELECTRONIC-STRUCTURE MODIFICATIONS UPON DOPING [J].
BREDAS, JL ;
THEMANS, B ;
FRIPIAT, JG ;
ANDRE, JM ;
CHANCE, RR .
PHYSICAL REVIEW B, 1984, 29 (12) :6761-6773
[8]   ABINITIO EFFECTIVE HAMILTONIAN STUDY OF THE ELECTRONIC-PROPERTIES OF CONJUGATED POLYMERS [J].
BREDAS, JL ;
CHANCE, RR ;
BAUGHMAN, RH ;
SILBEY, R .
JOURNAL OF CHEMICAL PHYSICS, 1982, 76 (07) :3673-3678
[9]   FORMATION OF 2-CARBON ACIDS FROM CARBON-DIOXIDE BY PHOTOREDUCTION ON CADMIUM-SULFIDE [J].
EGGINS, BR ;
IRVINE, JTS ;
MURPHY, EP ;
GRIMSHAW, J .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1988, (16) :1123-1124
[10]   SELECTIVE PHOTOREDUCTION OF CO2/HCO3- TO FORMATE BY AQUEOUS SUSPENSIONS AND COLLOIDS OF PD-TIO2 [J].
GOREN, Z ;
WILLNER, I ;
NELSON, AJ ;
FRANK, AJ .
JOURNAL OF PHYSICAL CHEMISTRY, 1990, 94 (09) :3784-3790