On the basis of an analysis of theoretical and numerical studies of model systems and of experiments on superconductivity in doped C-60, polyacenes, and the cuprate high-temperature superconductors, we propose, that a purely electronic mechanism of superconductivity requires structures at an intermediate scale or mesoscale. Specifically, we address the crucial question of how high-temperature superconducting pairing on the mesoscale can arise from purely repulsive electronic interactions.
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