SEQUENTIAL ELECTRON-TRANSFER LEADING TO LONG-LIVED CHARGE SEPARATED STATE IN A PORPHYRIN OXOCHLORIN PYROMELLITDIMIDE TRIAD

被引:43
|
作者
OSUKA, A
MARUMO, S
MARUYAMA, K
MATAGA, N
TANAKA, Y
TANIGUCHI, S
OKADA, T
YAMAZAKI, I
NISHIMURA, Y
机构
[1] OSAKA UNIV, FAC ENGN SCI, DEPT CHEM, TOYONAKA, OSAKA 560, JAPAN
[2] HOKKAIDO UNIV, FAC ENGN, DEPT CHEM PROC ENGN, SAPPORO, HOKKAIDO 060, JAPAN
关键词
D O I
10.1246/bcsj.68.262
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The synthesis and excited-state dynamics are described for fixed-distance porphyrin-oxo-chlorin-pyromellitdimide triads (P-C-Im) and related reference compounds. In zinc-oxochlorin-pyromellit-dimide (ZnP-Im), the (1)(ZnC)* is quenched by the attached Im through intramolecular charge separation (CS) in benzene, THF, and DMF, while the (1)(H2C)* in the corresponding free base is not significantly quenched by the Im even in polar DMF. In the steady-state fluorescence emission spectra, only the emission from the (1)(C)* is commonly observed, indicating an efficient intramolecular singlet-singlet excitation energy transfer from P to C. Of these, the fluorescence intensities of the (1)(H2C)* in ZnP-H2C and ZnP-H2C-Im are significantly reduced in polar DMF solution and this is attributed to the intramolecular CS that gives (ZnP)(+)-(H2C)(-)-Im and (ZnP)(+)-(H2C)(-), respectively. The (ZnP)(+)-(H2C)(-)-Im ion pair is clearly shown, by picosecond absorption spectroscopy, to be converted into a secondary, longer-lived charge separated state (ZnP)(+)-H2C-(Im)(-) via charge-shift reaction in competition with wasteful charge recombination to the ground state. The (ZnP)(+)-H2C-(Im)(-) state is formed in 0.09 quantum yield from ZnP-(1)(H2C)*-Im and has a life time of 0.24 mu s in DMF.
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页码:262 / 276
页数:15
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