4.8 Article

Symmetry-Reduction Enhanced Polarization-Sensitive Photodetection in Core-Shell SbI3/Sb2O3 van der Waals Heterostructure

期刊

SMALL
卷 16, 期 7, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.201907172

关键词

anisotropy; core-shell nanoparticles; heterostructures; polarization-sensitive photodetection; symmetry reduction

资金

  1. National Key Research and Development Program of China [2017YFA0207500, 2017YFF0107003]
  2. National Natural Science Foundation of China [61622406, 51502283]
  3. Strategic Priority Research Program of Chinese Academy of Sciences [XDB30000000]
  4. Beijing National Laboratory for Molecular Sciences [BNLMS201908]

向作者/读者索取更多资源

Structural symmetry is a simple way to quantify the anisotropic properties of materials toward unique device applications including anisotropic transportation and polarization-sensitive photodetection. The enhancement of anisotropy can be achieved by artificial symmetry-reduction design. A core-shell SbI3/Sb2O3 nanowire, a heterostructure bonded by van der Waals forces, is introduced as an example of enhancing the performance of polarization-sensitive photodetectors via symmetry reduction. The structural, vibrational, and optical anisotropies of such core-shell nanostructures are systematically investigated. It is found that the anisotropic absorbance of a core-shell nanowire is obviously higher than that of two single compounds from both theoretical and experimental investigations. Anisotropic photocurrents of the polarization-sensitive photodetectors based on these core-shell SbI3/Sb2O3 van der Waals nanowires are measured ranging from ultraviolet (UV) to visible light (360-532 nm). Compared with other van der Waals 1D materials, low anisotropy ratio (I-max/I-min) is measured based on SbI3 but a device based on this core-shell nanowire possesses a relatively high anisotropy ratio of approximate to 3.14 under 450 nm polarized light. This work shows that the low-symmetrical core-shell van der Waals heterostructure has large potential to be applied in wide range polarization-sensitive photodetectors.

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