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On the Higher-Order Static Polarizabilities and Dispersion Coefficients of the Fullerenes: An Ab Initio Study
[post]
2020
unpublished
<div>In this work, we used finite-field derivative techniques and density functional theory (DFT) to compute the static isotropic polarizability series (<i>i.e.</i>, dipole, quadrupole, and octupole ) for the C<sub>60</sub>-C<sub>84</sub> fullerenes and quantitatively assess the intrinsic non-additivity in these fundamental response properties. Critical analysis of the derived effective scaling laws provides new insight into how the electronic structure of finite-sized fullerenes---a unique
doi:10.26434/chemrxiv.12940652.v1
fatcat:24sxqe6yindmdmybllkccuaeta