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Hopping versus bulk conductivity in transparent oxides: 12CaO.7Al2O3

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arxiv cond-mat/0404187 v1 pith:P4PCOYDO submitted 2004-04-07 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords ca12al14o32conductivitybulkca12al14o33coulombh-dopedhighhopping
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First-principles calculations of the mayenite-based oxide, [Ca12Al14O32]{2+}(2e-), reveal the mechanism responsible for its high conductivity. A detailed comparison of the electronic and optical properties of this material with those of the recently discovered novel transparent conducting oxide, H-doped UV-activated Ca12Al14O33, allowed us to conclude that the enhanced conductivity in [Ca12Al14O32]{2+}(2e-) is achieved by elimination of the Coulomb blocade of the charge carriers. This results in a transition from variable range hopping behavior with a Coulomb gap in H-doped UV-irradiated Ca12Al14O33 to bulk conductivity in [Ca12Al14O32]{2+}(2e-). Further, the high degree of the delocalization of the conduction electrons obtained in [Ca12Al14O32]{2+}(2e-) indicate that it cannot be classified as an electride, originally suggested.

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