Photooxygenation of aromatic alkenes in zeolite nanocavities

被引:10
作者
Kojima, M [1 ]
Nakajoh, M
Matsubara, C
Hashimoto, S
机构
[1] Shinshu Univ, Dept Biosci & Biotechnol, Nagano 3994598, Japan
[2] Gifu Univ, United Grad Sch Agr Sci, Gifu 5011193, Japan
[3] Gunma Coll Technol, Dept Chem, Maebashi, Gumma 3718530, Japan
[4] Gunma Coll Technol, Adv Engn Courses, Maebashi, Gumma 3718530, Japan
来源
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2 | 2002年 / 11期
关键词
D O I
10.1039/b205672k
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
Aromatic alkenes such as styrene (1), 1,1- diphenylethene (2), and cis- and trans- stilbenes (3), but not triphenylethene (4), formed their contact charge- transfer (CCT) complexes with O-2 in solutions. In zeolite NaY, the CCT absorption band was observed only for 1 and 3. Irradiation of alkenes 1- 4 included in the zeolite nanocavities under O-2 produced benzaldehyde and benzophenone as the major oxygenation products. In particular, for 3 and 4, the photooxygenation competed with a photoelectrocyclic reaction, which subsequently yielded phenanthrenes as the exclusive photoproducts under O-2 in solution. It is likely that the oxygenation products were produced through the alkene cation radicals and superoxide anion radical generated by excitation of the CCT complexes and/ or photoinduced electron transfer from the excited alkenes to O-2. YAG laser (266 nm) excitation of 1 included in the zeolite cavities under vacuum produced its alkene cation radical and the trapped electron, Na-4(3+), both of which were quenched by O-2. On the basis of the optimum structure for the guest molecules obtained by semi- empirical molecular orbital calculations (AM1), it is suggested that the photooxygenation reaction was regulated by the electrostatic interaction between the guest molecules and alkali- metal cations in the nanocavities as well as by the strong electrostatic field which stabilized the ion radical pairs generated.
引用
收藏
页码:1894 / 1901
页数:8
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