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基于氮化硅/二氧化硅的蓝宝石法布里-珀罗干涉仪用于空气中甲醛的近紫外光气体传感

SiN/SiO-Based Fabry-Perot Interferometer on Sapphire for Near-UV Optical Gas Sensing of Formaldehyde in Air.

作者信息

Wolffenbuttel Reinoud, Winship Declan, Bilby David, Visser Jaco, Qin Yutao, Gianchandani Yogesh

机构信息

Laboratory for Electronic Instrumentation, Department of Microelectronics, Faculty of Electrical Engineering, Mathematics and Computer Science, Delft University of Technology, 2628 CD Delft, The Netherlands.

Center for Wireless Integrated MicroSensing and Systems (WIMS2), University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Sensors (Basel). 2024 Jun 3;24(11):3597. doi: 10.3390/s24113597.

Abstract

Fabry-Perot interferometers (FPIs), comprising foundry-compatible dielectric thin films on sapphire wafer substrates, were investigated for possible use in chemical sensing. Specifically, structures comprising two vertically stacked distributed Bragg reflectors (DBRs), with the lower DBR between a sapphire substrate and a silicon-oxide (SiO) resonator layer and the other DBR on top of this resonator layer, were investigated for operation in the near-ultraviolet (near-UV) range. The DBRs are composed of a stack of nitride-rich silicon-nitride (SiN) layers for the higher index and SiO layers for the lower index. An exemplary application would be formaldehyde detection at sub-ppm concentrations in air, using UV absorption spectroscopy in the 300-360 nm band, while providing spectral selectivity against the main interfering gases, notably NO and O. Although SiN thin films are conventionally used only for visible and near-infrared optical wavelengths (above 450 nm) because of high absorbance at lower wavelengths, this work shows that nitride-rich SiN is suitable for near-UV wavelengths. The interplay between spectral absorbance, transmittance and reflectance in a FPI is presented in a comparative study between one FPI design using stoichiometric material (SiN) and two designs based on N-rich compositions, SiN and SiN. Spectral measurements confirm that if the design accounts for phase penetration depth, sufficient performance can be achieved with the SiN-based FPI design for gas absorption spectroscopy in near-UV, with peak transmission at 330 nm of 64%, a free spectral range (FSR) of 20 nm and a full-width half-magnitude spectral resolution (FWHM) of 2 nm.

摘要

研究了法布里-珀罗干涉仪(FPI),其由蓝宝石晶圆衬底上与晶圆厂兼容的介电薄膜组成,探讨其在化学传感方面的潜在用途。具体而言,研究了由两个垂直堆叠的分布式布拉格反射器(DBR)组成的结构,其中较低的DBR位于蓝宝石衬底和氧化硅(SiO)谐振器层之间,另一个DBR位于该谐振器层之上,用于在近紫外(near-UV)范围内运行。DBR由用于较高折射率的富氮氮化硅(SiN)层堆叠和用于较低折射率的SiO层组成。一个典型的应用是在空气中检测亚ppm浓度的甲醛,使用300-360nm波段的紫外吸收光谱,同时提供针对主要干扰气体(特别是NO和O)的光谱选择性。尽管由于在较低波长下具有高吸收率,SiN薄膜传统上仅用于可见光和近红外光波长(高于450nm),但这项工作表明富氮SiN适用于近紫外波长。在一项比较研究中,展示了使用化学计量材料(SiN)的一种FPI设计与基于富氮成分SiN和SiN的两种设计之间,FPI中光谱吸收率、透射率和反射率之间的相互作用。光谱测量证实,如果设计考虑相位穿透深度,基于SiN的FPI设计在近紫外气体吸收光谱方面可以实现足够的性能,在330nm处的峰值透射率为64%,自由光谱范围(FSR)为20nm,半高宽光谱分辨率(FWHM)为2nm。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de06/11175207/bcb5a6b77906/sensors-24-03597-g001.jpg

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