4.8 Article

Chiral 2D-Perovskite Nanowires for Stokes Photodetectors

期刊

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 143, 期 22, 页码 8437-8445

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jacs.1c02675

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资金

  1. National Natural Science Foundation [51922012, 21703268, 21633014]
  2. Ministry of Science and Technology (MOST) of China [2017YFA0204504, 2018YFA0208502, 2018YFA0704803]
  3. Youth Innovation Promotion Association CAS [2018034]
  4. Beijing Natural Science Foundation [2182081]
  5. Beijing Municipal Science Technology [Z181100004418014]

向作者/读者索取更多资源

High-performance Stokes-parameter photodetectors are realized based on solution-processed chiral-perovskite nanowire arrays, which exhibit responsive circularly polarized light and large polarized ratio to linearly polarized light due to chiral ammonium cations and strictly aligned nanowires. The detectors demonstrate promising applications towards polarization imaging with their small footprint and high performance.
Structural engineering in multiple scales permits the integration of exotic properties into a single material, which boosts the development of ultracompact multifunctional devices. Layered perovskites are capable of cross-linking efficient carrier transport originating from few-layer perovskite frameworks with extended functionalities contributed by designable bulky organic cations and nanostructures, thus providing a platform for multiscale material engineering. Herein, high-performance Stokes-parameter photodetectors for arbitrary polarized light detection are realized on the basis of solution-processed chiral-perovskite nanowire arrays. The chiral ammonium cations intercalated between the perovskite layers are responsive to circularly polarized light with a maximum anisotropy factor of 0.15, while the strictly aligned nanowires with the anisotropic dielectric function result in a large polarized ratio of 1.6 to linearly polarized light. Single crystallinity and pure crystallographic orientation permit efficient in-plane carrier transport along the nanowires, yielding a responsivity of 47.1 W-1 and a detectivity of 1.24 x 10(13) Jones. By synergy of linear- and circular-polarization response with high optoelectronic performance for providing sufficient photocurrent contrasts, Stokes-parameter photodetection is demonstrated on these nanowires. Our Stokes-parameter photodetectors with a small footprint and high performances present promising applications toward polarization imaging.

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