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Visualizing Molecular Orientational Ordering and Electronic Structure in Cs<sub>n</sub>C<sub>60</sub> thin films

ORAL

Abstract

Alkali-doped fullerides exhibit a wealth of unusual phases that remain controversial by nature. Here a cryogenic scanning tunneling microscopy and first-principles calculation are combined to investigate the sub-molecular structural and electronic properties of expanded fullerene C60n- films on inert graphene with various cesium (Cs) doping. By varying the discrete charge states and film thicknesses, we reveal a large tunability of orientational ordering of C60n- anions, yet the tunneling conductance spectra are robustly characteristic of energy gaps, hallmarks of the Jahn-Teller distortions and electron correlations. The Fermi level lies halfway within the insulating gap for stoichiometric Cs doping level of n = 1, 2, 3 and 4, apart from which it moves toward the band edges with concomitant electronic states in the gap. Our findings establish the universality of Jahn-Teller instability, and clarify the relationship among the doping, structural and electronic structures in CsnC60 fullerides.

Presenters

  • Sha Han

    Physics, Tsinghua University

Authors

  • Sha Han

    Physics, Tsinghua University

  • Mengxue Guan

    Chinese Academy of Sciences

  • CanLi Song

    Physics, Tsinghua University

  • Yilin Wang

    Shandong University

  • Mingqiang Ren

    Physics, Tsinghua University

  • Sheng Meng

    Chinese Academy of Sciences, Institute of Physics, Chinese Academy of Sciences, Physics, Chinese Academy of Sciences

  • Xucun Ma

    Physics, Tsinghua University, Tsinghua University

  • Qikun Xue

    Department of Physics, Tsinghua University, Physics, Tsinghua University, Tsinghua University