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Doping of C-70 fullerene peapods with lithium vapor: Raman spectroscopic and Raman spectroelectrochemical studies

机译:锂蒸气对C-70富勒烯豌豆的掺杂:拉曼光谱和拉曼光谱电化学研究

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摘要

Raman spectroscopy and in situ Raman spectroelectrochemistry were applied to study the lithium vapor doping of C-70@SWCNTs (peapods). A strong degree of doping was proved by the vanishing of the single walled carbon nanotubes (SWCNT's) radial breathing mode (RBM) and by the attenuation of the tangential (TG) band intensity. In contrast to potassium vapor doping, the strong downshift of the frequency of the TG band has not been observed for Li-doping. The Li vapor treated peapods remained partly doped even if they were exposed to humid air. This has been reflected by a reduced intensity of the nanotube and the fullerene modes and by the change of the shape of the RBM band as compared to that of the undoped sample. The modes of the intratubular fullerene were almost unresolved after the contact of the Li-doped sample with water. A lithium insertion into the interior of a peapod and its strong interaction with the intratubular fullerene is suggested to be responsible for the air-insensitive residual doping. This residual doping was studied by spectroelectrochemical measurements. The TG band of the Li doped peapods is partly upshifted during the anodic doping, which points to the different state of C-70@SWCNTs and C-60@SWCNTs studied previously.
机译:拉曼光谱和原位拉曼光谱电化学用于研究C-70 @ SWCNTs(豌豆)的锂蒸气掺杂。单壁碳纳米管(SWCNT)径向呼吸模式(RBM)的消失以及切向(TG)谱带强度的减弱证明了强烈的掺杂程度。与钾蒸气掺杂相反,对于锂掺杂,未观察到TG带的频率的强烈下降。经Li蒸气处理过的豌豆足即使被暴露在潮湿的空气中也仍然部分掺杂。与未掺杂样品相比,这已通过纳米管强度和富勒烯模式强度降低以及RBM带的形状变化反映出来。掺杂锂的样品与水接触后,管内富勒烯的模式几乎无法分辨。有人建议将锂插入豆荚内部并与管状富勒烯强烈相互作用,这是导致对空气不敏感的残留掺杂的原因。通过光谱电化学测量研究了该残留掺杂。掺杂锂的豌豆的TG带在阳极掺杂过程中部分上移,这表明先前研究的C-70 @ SWCNT和C-60 @ SWCNT处于不同状态。

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