Orlowski Grzegorz A, Chowdhury Somenath, Kraatz Heinz-Bernhard
Department of Chemistry, University of Saskatchewan, Saskatoon, Saskatchewan, Canada.
Langmuir. 2007 Dec 4;23(25):12765-70. doi: 10.1021/la701740q. Epub 2007 Nov 2.
To deepen understanding of the electron transfer through a peptide backbone, we have investigated a series of noncyclic and cyclic ferrocene-peptide (Fc-peptide) cystamine conjugates immobilized on the gold microelectrode. Interaction of the ferrocenium group with BF4-, ClO4-, and PF6- as counterions was explored and the electron-transfer rates and reorganization energies were determined by variable temperature cyclic voltammetry. The highest reorganization energy was observed for the BF4- counterion, which has the weakest ability to associate with the ferrocenium cation. In addition, the more rigid cyclic Fc-peptide conjugates have a smaller reorganization energy ranging from 0.3 to 0.5 eV compared to less rigid noncyclic Fc-peptide cystamine conjugates which have higher reorganization energies in the range of 0.5-1.0 eV, which suggests that the dynamic properties of the conjugate play a role in mediating electron transfer in these systems.
为了深入理解通过肽主链的电子转移,我们研究了一系列固定在金微电极上的非环状和环状二茂铁 - 肽(Fc - 肽)胱胺共轭物。探索了二茂铁鎓基团与作为抗衡离子的BF4-、ClO4-和PF6-的相互作用,并通过变温循环伏安法测定了电子转移速率和重组能。对于与二茂铁阳离子缔合能力最弱的BF4-抗衡离子,观察到了最高的重组能。此外,与刚性较小的非环状Fc - 肽胱胺共轭物相比,刚性更强的环状Fc - 肽共轭物具有更小的重组能,范围为0.3至0.5 eV,而非环状Fc - 肽胱胺共轭物具有更高的重组能,范围为0.5 - 1.0 eV,这表明共轭物的动态性质在介导这些系统中的电子转移中起作用。