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We report the self-assembly of 2D double perovskite (BLA) CsAgBiBr (BLA=benzylammonium) on 3D Cs AgBiBr crystals, providing the first demonstration of polarization-sensitive photodetection using lead-free double perovskite heterocrystals (HCs). The (BLA) CsAgBiBr /Cs AgBiBr HC successfully combines the anisotropy of 2D double perovskites with the well-defined interface provided by heterogeneous integration. Driven by the built-in electric field in junction, photodetectors of HCs exhibit unique polarization dependence of zero-bias photocurrent with a large anisotropy ratio up to 9, which is 6 times amplified as compared to the pristine 2D (BLA) CsAgBiBr . More importantly, the present devices can remain polarization-sensitive with incident light intensity down to the nW cm level. Our study on lead-free hybrid perovskite HCs marks a step toward establishing robust material foundations for fundamental scientific investigations and the development of optoelectronic devices.

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http://dx.doi.org/10.1002/anie.202205939DOI Listing

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We report the self-assembly of 2D double perovskite (BLA) CsAgBiBr (BLA=benzylammonium) on 3D Cs AgBiBr crystals, providing the first demonstration of polarization-sensitive photodetection using lead-free double perovskite heterocrystals (HCs). The (BLA) CsAgBiBr /Cs AgBiBr HC successfully combines the anisotropy of 2D double perovskites with the well-defined interface provided by heterogeneous integration. Driven by the built-in electric field in junction, photodetectors of HCs exhibit unique polarization dependence of zero-bias photocurrent with a large anisotropy ratio up to 9, which is 6 times amplified as compared to the pristine 2D (BLA) CsAgBiBr .

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