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Spin-dependent charge transport through 2D chiral hybrid lead-iodide perovskites.


ABSTRACT: Chiral-induced spin selectivity (CISS) occurs when the chirality of the transporting medium selects one of the two spin ½ states to transport through the media while blocking the other. Monolayers of chiral organic molecules demonstrate CISS but are limited in their efficiency and utility by the requirement of a monolayer to preserve the spin selectivity. We demonstrate CISS in a system that integrates an inorganic framework with a chiral organic sublattice inducing chirality to the hybrid system. Using magnetic conductive-probe atomic force microscopy, we find that oriented chiral 2D-layered Pb-iodide organic/inorganic hybrid perovskite systems exhibit CISS. Electron transport through the perovskite films depends on the magnetization of the probe tip and the handedness of the chiral molecule. The films achieve a highest spin-polarization transport of up to 86%. Magnetoresistance studies in modified spin-valve devices having only one ferromagnet electrode confirm the occurrence of spin-dependent charge transport through the organic/inorganic layers.

SUBMITTER: Lu H 

PROVIDER: S-EPMC6897542 | biostudies-literature | 2019 Dec

REPOSITORIES: biostudies-literature

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Spin-dependent charge transport through 2D chiral hybrid lead-iodide perovskites.

Lu Haipeng H   Wang Jingying J   Xiao Chuanxiao C   Pan Xin X   Chen Xihan X   Brunecky Roman R   Berry Joseph J JJ   Zhu Kai K   Beard Matthew C MC   Vardeny Zeev Valy ZV  

Science advances 20191206 12


Chiral-induced spin selectivity (CISS) occurs when the chirality of the transporting medium selects one of the two spin ½ states to transport through the media while blocking the other. Monolayers of chiral organic molecules demonstrate CISS but are limited in their efficiency and utility by the requirement of a monolayer to preserve the spin selectivity. We demonstrate CISS in a system that integrates an inorganic framework with a chiral organic sublattice inducing chirality to the hybrid syste  ...[more]

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