Electronic properties of potassium-intercalated C 60 peapods

Electronic properties of potassium-intercalated C 60 peapods
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DOI:
10.1103/physrevb.69.075417
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发表时间:
2004-02
期刊:
影响因子:
3.7
通讯作者:
Xianjie Liu;T. Pichler;M. Knupfer;J. Fink;H. Kataura
Xianjie Liu;T. Pichler;M. Knupfer;J. Fink;H. Kataura
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Xianjie Liu;T. Pichler;M. Knupfer;J. Fink;H. Kataura

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We present a study of the electronic structure of potassium-intercalated ${\mathrm{C}}_{60}$-filled single-wall carbon nanotubes (SWCNT's), so-called peapods, in comparison to the corresponding reference SWCNT's. The structural changes and the variation of the electronic properties were characterized by electron energy-loss spectroscopy in transmission. The analysis of the $\mathrm{C}1s$ core-level excitations shows that the doping level is nearly the same for peapods and the reference SWCNT's and that a competitive charge transfer of the $\mathrm{K}4s$ electrons to both the ${\mathrm{C}}_{60}$ peas and the SWCNT pods occurs. The intercalation process causes an expansion of the intertube distance in the bundle lattices and a decrease of the intermolecular distance between the ${\mathrm{C}}_{60}$ peas in the doped peapods. Regarding the optical properties, the charge transfer to the peapods (SWCNT's) yields the formation of a free-charge-carrier plasmon at about 1.3 eV (1.45 eV). An analysis by an effective Drude-Lorentz model shows that the lower plasmon energy in the doped peapods can be explained by a higher effective screening in these hybrid compounds.
We present a study of the electronic structure of potassium-intercalated ${\mathrm{C}}_{60}$-filled single-wall carbon nanotubes (SWCNT's), so-called peapods, in comparison to the corresponding reference SWCNT's. The structural changes and the variation of the electronic properties were characterized by electron energy-loss spectroscopy in transmission. The analysis of the $\mathrm{C}1s$ core-level excitations shows that the doping level is nearly the same for peapods and the reference SWCNT's and that a competitive charge transfer of the $\mathrm{K}4s$ electrons to both the ${\mathrm{C}}_{60}$ peas and the SWCNT pods occurs. The intercalation process causes an expansion of the intertube distance in the bundle lattices and a decrease of the intermolecular distance between the ${\mathrm{C}}_{60}$ peas in the doped peapods. Regarding the optical properties, the charge transfer to the peapods (SWCNT's) yields the formation of a free-charge-carrier plasmon at about 1.3 eV (1.45 eV). An analysis by an effective Drude-Lorentz model shows that the lower plasmon energy in the doped peapods can be explained by a higher effective screening in these hybrid compounds.