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Controlling Electron Transfer in Donor-Bridge-Acceptor Molecules Using Cross-Conjugated Bridges
被引:142
作者:
Ricks, Annie Butler
Solomon, Gemma C.
Colvin, Michael T.
Scott, Amy M.
Chen, Kun
Ratner, Mark A.
[1
]
Wasielewski, Michael R.
机构:
[1] Northwestern Univ, Dept Chem, Evanston, IL 60208 USA
关键词:
PHOTOINDUCED CHARGE SEPARATION;
TIGHT-BINDING METHOD;
LONG-RANGE ELECTRON;
EXCITED-STATE;
COMPLEX MATERIALS;
ENERGY-TRANSFER;
TRANSPORT;
SYSTEMS;
WIRE;
RECOMBINATION;
D O I:
10.1021/ja107420a
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Photoinitiated charge separation (CS) and recombination (CR) in a series of donor-bridge-acceptor (D-B-A) molecules with cross-conjugated, linearly conjugated, and saturated bridges have been compared and contrasted using time-resolved spectroscopy. The photoexcited charge transfer state of 3,5-dimethyl-4-(9-anthracenyl)julolidine (DMJ-An) is the donor, and naphthalene-1,8:4,5-bis(dicarboximide) (NI) is the acceptor in all cases, along with 1,1-diphenylethene, trans-stilbene, diphenylmethane, and xanthone bridges. Photoinitiated CS through the cross-conjugated 1,1-diphenylethene bridge is about 30 times slower than through its linearly conjugated trans-stilbene counterpart and is comparable to that observed through the diphenylmethane bridge. This result implies that cross-conjugation strongly decreases the pi orbital contribution to the donor-acceptor electronic coupling so that electron transfer most likely uses the bridge a system as its primary CS pathway. In contrast, the CS rate through the cross-conjugated xanthone bridge is comparable to that observed through the linearly conjugated trans-stilbene bridge. Molecular conductance calculations on these bridges show that cross-conjugation results in quantum interference effects that greatly alter the through-bridge donor-acceptor electronic coupling as a function of charge injection energy. These calculations display trends that agree well with the observed trends in the electron transfer rates.
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页码:15427 / 15434
页数:8
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