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September 30, 2025Advanced Materials2 citations

Ultrafast Preparation of 10‐µm‐Thick Large‐Area Single‐Crystal Au (111) Foils

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HWHuixuan WangWHWeiye HaoCCChen Chen

Key Points

  • Single-crystal Au (111) foils can be prepared efficiently within 10 minutes, achieving areas of up to 100 cm².
  • Oxygen incorporation during annealing effectively suppresses thermal grooves and enhances grain growth.
  • Nonuniform residual stress in polycrystalline Au foils accelerates grain coalescence, leading to single-crystal formation.
  • This method can also be used to produce single-crystal Pt (111) foils, expanding its applications.

Abstract

Abstract Single‐crystal Au foils are widely used in mechanics, catalysis, and as substrates for 2D material growth. However, the preparation of large‐area single‐crystal Au foils, particularly thin foils, remains challenging because of the inhibition of abnormal grain growth by thermal grooves caused by surface self‐diffusion. Here, an oxygen‐promoted annealing method is reported for the preparation of 10‐µm‐thick single‐crystal Au (111) foils. The nonuniform distribution of residual stress in the polycrystalline Au foil accelerates the growth and coalescence of multiple abnormal grains, so that a single‐crystal Au (111) foil with an area of up to 100‐cm 2 can be obtained within a 10 min annealing process. This method demonstrates superior preparation efficiency compared to current techniques. Mechanistic analysis confirms that oxygen incorporation effectively inhibits the formation of thermal grooves, and the resulting reduction in groove depth enhances abnormal grain growth. Furthermore, bulk single‐crystal Au (111) foils can be prepared using the as‐obtained foils as an epitaxial template. This method is also applicable for the preparation of single‐crystal Pt (111) foils. The findings open new pathways for the scalable production and application of single‐crystal noble metal foils.

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Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/68dc261d8a7d58c25ebb29b8https://doi.org/10.1002/adma.202515581
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