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首页> 外文期刊>Chemistry: A European journal >Terminal redox-site effect on the long-range electron conduction of Fe(tpy)_2 oligomer wires on a gold electrode
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Terminal redox-site effect on the long-range electron conduction of Fe(tpy)_2 oligomer wires on a gold electrode

机译:末端氧化还原位对金电极上Fe(tpy)_2低聚物线的远程电子传导的影响

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This article completes our comprehensive understanding of the electron transport properties of our original p-conjugated redox-active molecular wires comprising Fe bridged by p-phenylene linkers (tpy=2,2':6',2''-terpyridine). The Fe(tpy)_2 oligomer wires comprise three types of tpy ligands: the anchor tpy ligand (A series) makes a junction between the wire and electrode, the bridging bis-tpy ligand (L series) connects the Fe(tpy)2 units, and the terminal tpy ligand (T series) possesses a redox site as a probe for the long-range electron transport ability. Taking advantage of the precise tunability of the composition of the Fe- (tpy)_2 oligomer wires, thus far we investigated how A and L impacted on the electron-transport ability. The excellent long-range electron transport ability with ultrasmall attenuation constants (bd, 0.002 -1 as the minimum) depends on L significantly [Chem. Asian J. 2009, 4, 1361], whereas A is unrelated to the bd value, but influences the zero-distance electron-transfer rate constant, ket 0 [J. Am. Chem. Soc.2010, 132, 4524]. Herein we study the influence of terminal ligand Tx (x=1- 3). bd is independent of T, however, T~3, with a cyclometallated Ru complex as the redox site, gives rise to a ket 0 value greater than T1 and T2 with ferrocene. This series of simple but definitive conclusions indicates that we have reached the stage of being able to precisely design molecular wires to attain desirable single-molecule electron conduction.
机译:本文完成了我们对包含通过对亚苯基连接体(tpy = 2,2':6',2''-叔吡啶)桥接的Fe的原始p共轭氧化还原活性分子线的电子传输性质的全面理解。 Fe(tpy)_2低聚物金属丝包含三种类型的tpy配体:锚定的tpy配体(A系列)在金属丝和电极之间形成连接,桥接的双tpy配体(L系列)连接Fe(tpy)2单元,并且末端tpy配体(T系列)具有氧化还原位点,作为长距离电子传输能力的探针。到目前为止,我们利用Fe-(tpy)_2低聚物线的组成的精确可调性,研究了A和L如何影响电子传输能力。具有极小的衰减常数(bd,最小0.002 -1)的优异的远程电子传输能力极大地取决于L。 Asian J. 2009,4,1361],而A与bd值无关,但会影响零距离电子传输速率常数ket 0 [J.上午。化学[Soc.2010,132,4524]。在本文中,我们研究了末端配体Tx(x = 1-3)的影响。 bd与T无关,但是,T〜3(带有环金属化的Ru络合物作为氧化还原位点)产生的ket 0值大于二茂铁的T1和T2。这一系列简单但确定的结论表明,我们已经能够精确设计分子导线以获得所需的单分子电子传导。

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