Epitaxy of a Monocrystalline CsPbBr3–SrTiO3 Halide–Oxide Perovskite p–n Heterojunction with High Stability for Photodetection

Author:

Liu Songlong1,Chen Yang1,Gao Weiqi1,Li Wanying1,Yang Xiaokun1,Li Zhiwei1,Xiao Zhaojing1,Liu Yuan1,Wang Yiliu1ORCID

Affiliation:

1. Key Laboratory for Micro‐Nano Optoelectronic Devices of Ministry of Education School of Physics and Electronics Hunan University Changsha 410082 P. R. China

Abstract

AbstractPerovskite heterojunctions are essential components of perovskite optoelectronics, but their construction and investigation have been impeded by the instability and severe anion interdiffusion. This work epitaxially deposits p‐type CsPbBr3 on n‐type Nb:SrTiO3 (STO) to construct a functional perovskite heterojunction with high stability. The lattice match allows epitaxial growth of CsPbBr3 to occur over large scale, resulting in a monocrystalline thin film with excellent crystallinity and uniformity. The highly stable STO prevents the anion migration frequently happening in halide perovskites, forming a sharp interface of two perovskite with opposite conduction type, with which a diode is fabricated and a current rectification ratio of 374 is obtained. The diode is able to work as a photodetector with dark current of 2.01 × 10−12 A at −1 V and responsivity (R) of 8.26 A W−1, rendering a detectivity (D*) of 2.98 × 1013 Jones. Owing to the all‐inorganic architecture, effective photoresponse at temperature as high as 150 °C is guaranteed with D* of ≈1.52 × 1013 Jones. Combining the unique optoelectrical properties of halide perovskite and the rigidity of oxide perovskite, the epitaxy of CsPbBr3 on n–type STO opens up a new method to construct functional perovskite heterojunction for optoelectronics.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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