Yao Jiacheng, Li Yong, Wang Shuangshuang, Ding Tao
Key Laboratory of Artificial Micro/Nano Structure of Ministry of Education, School of Physics and Technology, Wuhan University, Wuhan 430072, China.
ACS Nano. 2024 Apr 16;18(15):10618-10624. doi: 10.1021/acsnano.4c00620. Epub 2024 Apr 2.
Optical-induced shape transformation of single nanoparticles on substrates has shown benefits of simplicity and regularity for single-particle device fabrication and on-chip integration. However, most of the existing strategies are based on wet chemical growth and etching, which could lead to surface contamination with limited local selectivity and device compatibility. Shape deformation via the photothermal effect can overcome these issues but has limited versatility and tunability largely due to the high surface tension of the molten droplet. Here we show gold nanoparticles (Au NPs) can drastically transform into nanoplates under the irradiation of a continuous wave laser (446 nm). We reveal the dielectric thin film underneath the molten Au is critical in deforming the NP into faceted nanoplate under the drive of photothermophoretic forces, which is sufficient to counteract the surface tension of the molten droplet. Both experimental evidence and simulations support this thin-film-assisted photothermal deformation mechanism, which is local selective and generally applicable to differently shaped Au NPs. It provides a facile and robust strategy for single-plate-based device applications.
基底上单个纳米粒子的光致形状转变对于单粒子器件制造和片上集成而言,已展现出简单性和规则性的优势。然而,现有的大多数策略都基于湿化学生长和蚀刻,这可能会导致表面污染,且局部选择性和器件兼容性有限。通过光热效应实现的形状变形能够克服这些问题,但由于熔滴的高表面张力,其通用性和可调性在很大程度上受到限制。在此,我们展示了金纳米粒子(Au NPs)在连续波激光(446 nm)照射下可急剧转变为纳米片。我们揭示,在光泳力的驱动下,熔融金下方的介电薄膜对于将纳米粒子变形为多面纳米片至关重要,该光泳力足以抵消熔滴的表面张力。实验证据和模拟均支持这种薄膜辅助的光热变形机制,它具有局部选择性,并且普遍适用于不同形状的金纳米粒子。它为基于单板的器件应用提供了一种简便而稳健的策略。