Large‐Scale Ultrastable 2D Inorganic Molecular Crystal BiBr3 and Heterostructures with Superior Photoluminescence Enhancement

Author:

He Xiaoyu1,Wu Yu1,Liu Shenghong1,He Wenke1,Li Shaohua1,Huo Gaohang1,Jiang Letian1,Kapitonov Yury2,Xing Guichuan3,Zhao Yinghe1,Li Yuan14,Zhai Tianyou145ORCID

Affiliation:

1. State Key Laboratory of Material Processing and Die & Mould Technology School of Materials Science and Engineering Huazhong University of Science and Technology (HUST) Wuhan 430074 China

2. Department of Photonics Saint Petersburg State University Saint Petersburg 199034 Russia

3. Institute of Applied Physics and Materials Engineering University of Macau Macao SAR 999078 China

4. Shenzhen Huazhong University of Science and Technology Research Institute Shenzhen 518057 China

5. Optics Valley Laboratory Wuhan 430074 China

Abstract

AbstractIn contrast to conventional atomic crystals, two‐dimensional inorganic molecular crystals (2DIMCs) possess a unique crystal structure composed of small molecules held together by van der Waals force. Such distinctive structure grants them specific chemical and physical properties highly suitable for electronic and optoelectronic applications. However, the synthesis of 2DIMCs has posed significant challenges due to the inherent issues such as uncontrollable growth orientation stemming from their natural crystalline isotropy and poor stability resulting from the weak intermolecular connections. Addressing these obstacles, the preparation of large‐scale and highly‐stable 2DIMC BiBr3, and its heterostructure are reported here by developing crystallization orientation engineering strategies. This approach has successfully yielded centimeter‐scale 2DIMC BiBr3 with a clean and dense surface, showcasing exceptional long‐term air‐stability exceeding 80 days. Furthermore, the universal growth of large‐scale 2DIMC BiBr3 is demonstrated on diverse substrates, including SiO2, Al2O3, and MoS2 monolayers. Notably, the resultant 2D BiBr3/MoS2 heterostructure exhibits remarkable photoluminescence enhancement. This contribution paves a universal avenue for the mature synthesis of large‐scale 2DIMCs with superior stability, holding great promise for prompting their integration in practical electronic and optoelectronic devices.

Funder

National Basic Research Program of China

Shenzhen Science and Technology Innovation Program

Ministry of Science and Higher Education of the Russian Federation

National Natural Science Foundation of China

Publisher

Wiley

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