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.202205939 | DOI Listing |
Angew Chem Int Ed Engl
August 2022
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian, 350002, China.
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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