4.8 Article

One-Step Exfoliation Method for Plasmonic Activation of Large-Area 2D Crystals

期刊

ADVANCED SCIENCE
卷 9, 期 32, 页码 -

出版社

WILEY
DOI: 10.1002/advs.202204247

关键词

mechanical exfoliation; photoluminescence; Raman spectrum; surface plasmonic polariton; two-dimensional materials

资金

  1. National Key Research and Development Program of China [2019YFA0308000, 2021YFA1401800, 2018YFE0202700, 2018YFA0305800, 2018YFA0704200]
  2. National Natural Science Foundation of China [62022089, 11874405, 11974422, 92163206, 61971035, 61927808, 617251]
  3. Chongqing Outstanding Youth Fund [2021ZX0400005]
  4. Strategic Priority Research Program (B) of the Chinese Academy of Sciences [XDB33000000, XDB30000000]
  5. Fundamental Research Funds for the Central Universities of China
  6. Research Funds of Renmin University of China [22XNKJ30]

向作者/读者索取更多资源

The authors present a one-step Ag-assisted method for efficient exfoliation of large-area 2D monolayers with a yield ratio comparable to the Au-enhanced exfoliation method. The rough Ag surface facilitates the generation of surface plasmons, and the strong coupling between 2D semiconductor crystals and the Ag film leads to unique photoluminescence enhancement.
Advanced exfoliation techniques are crucial for exploring the intrinsic properties and applications of 2D materials. Though the recently discovered Au-enhanced exfoliation technique provides an effective strategy for the preparation of large-scale 2D crystals, the high cost of gold hinders this method from being widely adopted in industrial applications. In addition, direct Au contact could significantly quench photoluminescence (PL) emission in 2D semiconductors. It is therefore crucial to find alternative metals that can replace gold to achieve efficient exfoliation of 2D materials. Here, the authors present a one-step Ag-assisted method that can efficiently exfoliate many large-area 2D monolayers, where the yield ratio is comparable to Au-enhanced exfoliation method. Differing from Au film, however, the surface roughness of as-prepared Ag films on SiO2/Si substrate is much higher, which facilitates the generation of surface plasmons resulting from the nanostructures formed on the rough Ag surface. More interestingly, the strong coupling between 2D semiconductor crystals (e.g., MoS2, MoSe2) and Ag film leads to a unique PL enhancement that has not been observed in other mechanical exfoliation techniques, which can be mainly attributed to enhanced light-matter interaction as a result of extended propagation of surface plasmonic polariton (SPP). This work provides a lower-cost and universal Ag-assisted exfoliation method, while at the same time offering enhanced SPP-matter interactions.

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