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Experimental test of the vibronically coupled tunneling description of biological electron transfer.

机译:生物耦合电子传递的电子耦合隧穿描述的实验测试。

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摘要

Evidence for the constructs central to vibronically coupled electron transfer has been obtained. Our experiments show the existence of a weak (f congruent to 10(-6)) charge-transfer absorption band in the near infrared for the bound donor-acceptor complex, cytochrome c-Fe(CN)6. Such a charge-transfer band had been predicted from the theory of such transfers. The experimental method, using a form of excitation modulation spectroscopy, measures only the optical absorption that induces charge transfer between the donor and the acceptor (and does not detect other absorptions) and allows the study of charge-transfer bands whose absorbances are small compared to the sample absorbance. The energy position and oscillator strength of the band agree with the general predictions of this vibronically coupled tunneling theory. We suggest that, in this system at room temperature, the electron transfer can be described by this tunneling theory. This model system result gives credence to the short electron transfer distances the theory has predicted for biological electron transfers.
机译:已经获得了对于以振动方式耦合的电子转移为中心的构建体的证据。我们的实验表明,对于结合的供体-受体复合物,细胞色素c-Fe(CN)6,在近红外中存在一个弱的(等于10(-6))电荷转移吸收带。已经从这种转移的理论预测了这种电荷转移带。实验方法使用一种形式的激发调制光谱法,仅测量诱导供体和受体之间电荷转移的光学吸收(而不检测其他吸收),并允许研究其吸光度小于样品吸光度。该频带的能量位置和振荡器强度与这种通过振动耦合的隧穿理论的一般预测一致。我们建议,在室温下的该系统中,电子传输可以通过这种隧穿理论来描述。该模型系统的结果证明了该理论为生物电子转移预测的短电子转移距离。

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