Lithium Attachment to C60 and Nitrogen- and Boron-Doped C60: A Mechanistic Study

锂在C60及氮硼掺杂C60上的附着:机理研究

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Abstract

Fullerene-based materials including C(60) and doped C(60) have previously been proposed as anodes for lithium ion batteries. It was also shown earlier that n- and p-doping of small molecules can substantially increase voltages and specific capacities. Here, we study ab initio the attachment of multiple lithium atoms to C(60), nitrogen-doped C(60) (n-type), and boron doped C(60) (p-type). We relate the observed attachment energies (which determine the voltage) to changes in the electronic structure induced by Li attachment and by doping. We compare results with a GGA (generalized gradient approximation) functional and a hybrid functional and show that while they agree semi-quantitatively with respect to the expected voltages, there are qualitative differences in the electronic structure. We show that, contrary to small molecules, single atom n- and p-doping will not lead to practically useful modulation of the voltage-capacity curve beyond the initial stages of lithiation.

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