Chen Jian, Qin Zhihui, Pan Jinbo, Huang Min, Du Shixuan, Cao Gengyu
State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences , Wuhan 430071, P. R. China.
Institute of Physics, Chinese Academy of Sciences , Beijing 100190, P. R. China.
Langmuir. 2015 Oct 27;31(42):11438-42. doi: 10.1021/acs.langmuir.5b02965. Epub 2015 Oct 16.
Orientational configuration and electronic states of Gd@C82 bonding to Cu(111) have been thoroughly investigated by low-temperature scanning tunneling microscopy/spectroscopy (LT-STM/S) and differential conductance mapping complemented by first-principles calculations. We clarify that individual Gd@C82 energetically adopts tilting adsorption configuration with the scanning tunneling spectroscopy (STS) states readily assigned to the C82 cage/Cu(111) hybrid states and the Gd/cage hybrid states, respectively. Moreover, upon assembling and sufficient thermal activation, Gd@C82 fullerenes are inclined to restore the energetically favored tilting orientational configuration similar to an individual one. This suggests the feasibility of high-level integration of single-Gd@C82 based moletronic device with the performances almost unchanged by two-dimensional arrangement. Furthermore, by rationalizing the inter-Gd@C82 interaction induced slight energy offset of the electronic states, we qualitatively confirm the shown electronic hybrid states as Cu(111)-, C82 cage- and Gd-dominant hybrid states, respectively.
通过低温扫描隧道显微镜/光谱(LT-STM/S)以及结合第一性原理计算的微分电导映射,对与Cu(111)键合的Gd@C82的取向构型和电子态进行了深入研究。我们阐明,单个Gd@C82在能量上采用倾斜吸附构型,扫描隧道光谱(STS)态分别易于归属于C82笼/Cu(111)杂化态和Gd/笼杂化态。此外,在组装并经过充分的热活化后,Gd@C82富勒烯倾向于恢复类似于单个分子的能量上有利的倾斜取向构型。这表明基于单个Gd@C82的分子电子器件进行高级集成的可行性,其性能在二维排列时几乎不变。此外,通过合理化Gd@C82之间相互作用引起的电子态轻微能量偏移,我们定性地确认了所显示的电子杂化态分别为以Cu(111)、C82笼和Gd为主导的杂化态。