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首页> 外文期刊>ACS nano >Formation of a G-Quartet-Fe Complex and Modulation of Electronic and Magnetic Properties of the Fe Center
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Formation of a G-Quartet-Fe Complex and Modulation of Electronic and Magnetic Properties of the Fe Center

机译:G-四元铁配合物的形成和铁心的电磁性能的调控

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摘要

Although the G-quartet structure has been extensively investigated due to its biological importance, the formation mechanism, in particular, the necessity of metal centers, of an isolated G-quartet on solid surfaces remains ambiguous. Here, by using scanning tunneling microscopy under well-controlled ultra-high-vacuum conditions and density functional theory calculations we have been able to clarify that besides the intraquartet hydrogen bonding a metal center is mandatory for the formation of an isolated G-quartet. Furthermore, by subtly perturbing the local coordination bonding schemes within the formed G-quartet complex via local nanoscale scanning tunneling microscopy manipulations, we succeed in modulating the d orbitals and the accompanying magnetic properties of the metal center. Our results demonstrate the feasibility of forming an isolated G-quartet complex on a solid surface and that the strategy of modulating electronic and magnetic properties of the metal center can be extended to other related systems such as molecular spintronics.
机译:尽管由于其生物学重要性已广泛研究了G-四重奏结构,但是在固体表面上分离的G-四重奏的形成机理,特别是金属中心的必要性仍然不清楚。在这里,通过在控制良好的超高真空条件下使用扫描隧道显微镜和密度泛函理论计算,我们已经能够弄清楚,除了四重原子内的氢键作用外,金属中心对于形成孤立的G四重原子也是必不可少的。此外,通过局部纳米级扫描隧道显微镜操作,通过微妙地扰动已形成的G四重合物内的局部配位键方案,我们成功地调制了d轨道以及金属中心的伴随磁性。我们的结果证明了在固体表面上形成一个孤立的G四方络合物的可行性,并且调节金属中心的电子和磁性性质的策略可以扩展到其他相关系统,例如分子自旋电子学。

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