Lu Ping, Guan Jingwen, Hnatovsky Cyril, Ding Huimin, Silva Kasthuri De, Gaburici Liliana, Kingston Christopher, Mihailov Stephen J
Quantum and Nanotechnologies Research Center, National Research Council Canada, 100 Sussex Drive, Ottawa, ON K1A 0R6, Canada.
Nanomaterials (Basel). 2025 Jun 3;15(11):861. doi: 10.3390/nano15110861.
Boron nitride nanotubes (BNNTs) are predicted to be promising one-dimensional nonlinear optical materials, but to date, only one experimental observation has been made using individual nanotubes. In this work, second harmonic generation (SHG) was achieved from free-standing bulk BNNT sheets and BNNT coatings on silica substrates. Focusing femtosecond infrared (fs-IR) laser pulses with a wavelength of 800 nm onto the BNNT assemblies resulted in strong SHG at a wavelength of 400 nm. It was observed that due to the thickness variation of the BNNT assemblies and orientational alignment of BNNTs in the assemblies, the intensity of the second-harmonic (SH) radiation changed dramatically when different locations on the samples were investigated. Among all the BNNT assemblies tested, the localized SH response and its dependence on the polarization of the excitation fs-IR pulses were the strongest in BNNT coatings produced by a dip-coating process. By measuring the SH response, the uniformity, reproducibility, and efficiency of BNNT deposition processes could be assessed. For applications requiring a high SH response from BNNT assemblies, the process of dip coating is preferred.
氮化硼纳米管(BNNTs)被认为是很有前景的一维非线性光学材料,但迄今为止,仅对单个纳米管进行过一次实验观测。在这项工作中,从独立的块状BNNT薄片以及二氧化硅衬底上的BNNT涂层实现了二次谐波产生(SHG)。将波长为800 nm的飞秒红外(fs-IR)激光脉冲聚焦到BNNT组件上,在波长400 nm处产生了强烈的SHG。观察到,由于BNNT组件的厚度变化以及组件中BNNTs的取向排列,当研究样品上的不同位置时,二次谐波(SH)辐射的强度发生了显著变化。在所有测试的BNNT组件中,通过浸涂工艺制备的BNNT涂层中局部SH响应及其对激发fs-IR脉冲偏振的依赖性最强。通过测量SH响应,可以评估BNNT沉积工艺的均匀性、可重复性和效率。对于需要BNNT组件具有高SH响应的应用,浸涂工艺是首选。