Charge localization effects and transport in dendritic nanostructures for photovoltaic applications
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Charge localization and transport are investigated in dendritic interfaces (DIs).

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Several types of DIs are modeled by diffusion limited aggregation type processes.

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A coherent scattering formalism is employed to investigate the charge localization effects and transfer characteristics.

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The results indicate correlations between the surface area of the DIs and transmission functions.

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The approach provides a general framework for the characterization and optimization of DIs as part of open quantum systems.

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