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卷绕的 SiO /SiN 微管,具有增强的品质因数,可实现灵敏的溶剂传感。

Rolled-up SiO /SiN microtubes with an enhanced quality factor for sensitive solvent sensing.

机构信息

Department of Mechanical and Industrial Engineering, University of Toronto, 5 King's College Road, Toronto, Ontario, M5S 3G8, Canada. Department of Mechanical Engineering, McGill University, 817 Sherbrooke Street West, Montreal, Quebec, H3A 0C3, Canada.

出版信息

Nanotechnology. 2018 Oct 12;29(41):415501. doi: 10.1088/1361-6528/aad0b1. Epub 2018 Jul 3.

Abstract

The microtubes made through rolling-up of strain-engineered nanomembranes have received growing research attention after their first invention due to the technology's high flexibility, integrability, and versatility. These rolled-up microtubes have been used for a variety of device applications including sensors, batteries and transistors, among others. This paper reports the development of highly sensitive whispering-gallery mode (WGM) chemical sensors based on rolled-up microtube optical microcavities (RUM-OCs). For the first time, such microcavities were batch fabricated through rolling-up of plasma-enhanced chemical vapor deposition (PECVD)-synthesized SiO /SiN bilayer nanomembranes, which have better optical properties than the conventional electron-beam-deposited SiO/SiO bilayers. Benefiting from the high refractive index (RI) of PECVD-deposited SiN , our RUM-OC shows an enhanced quality factor of 880 that is much higher than that (50) of a SiO/SiO RUM-OC with the same dimensions. The developed RUM-OC is used for sensitive WGM solvent sensing, and demonstrate a limit of detection of 10 refractive index unit (RIU), which is 10 times lower than that (10 RIU) of a SiO/SiO RUM-OC.

摘要

在应变工程纳米膜滚压制成的微管问世后,由于其具有高灵活性、可集成性和多功能性,受到了越来越多的研究关注。这些卷制的微管已被用于各种器件应用,包括传感器、电池和晶体管等。本文报道了基于卷绕微管光学微腔(RUM-OC)的高灵敏度 whispering-gallery 模式(WGM)化学传感器的发展。首次通过等离子体增强化学气相沉积(PECVD)合成的 SiO /SiN 双层纳米膜的滚压批量制造了这种微腔,其光学性能优于传统的电子束沉积 SiO/SiO 双层。得益于 PECVD 沉积的 SiN 的高折射率(RI),我们的 RUM-OC 表现出 880 的增强品质因数,远高于相同尺寸的 SiO/SiO RUM-OC 的 50。所开发的 RUM-OC 用于灵敏的 WGM 溶剂传感,并显示出 10 折射率单位(RIU)的检测极限,比 SiO/SiO RUM-OC 的 10 RIU 低 10 倍。

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