尹旭坤

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副教授
博士生导师
硕士生导师
- 性别:男
- 在职信息:在岗
- 所在单位:光电工程学院
- 入职时间: 2020-07-14
- 学科:光学工程
- 办公地点:西安电子科技大学北校区西大楼106
- 电子邮箱:5cf44d3db6271349f53fd39df098c10c4a6ee90b51c329ec7e32e7e47a9520e9c9725ddd785f731b21a003afd15b14b9897cc1c21133f62bdc51defb711b991d559b1b03afa80fec3d38aaf895b1b85ce7dc22062ee1ce199e827c274a6943d889f0ba2b78f7ae65a3dbf68ec036def9fac7ad3017d417c46481afa15e32035d
访问量:
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[1]Ppb-Level SO2 Photoacoustic Sensors with a Suppressed Absorption−Desorption Effect by Using a 7.41 μm External-Cavity Quantum Cascade Laser, Acs Sensors, Vol.5, 549-556 (2020). (SCI一区)
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[2]Ppb-level photoacoustic sensor system for saturation-free CO detection of SF6 decomposition by use of a 10 W fiber-amplified near-infrared diode laser, Sensors and Actuators B: Chemical, Vol.282, 567-573 (2019). (SCI一区)
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[3]Highly sensitive photoacoustic multicomponent gas sensor for SF6 decomposition online monitoring, Optics Express, Vol. 27, No.4, A224-A234 (2019). (SCI二区)
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[4]Ppb-level nitric oxide photoacoustic sensor based on a mid-IR quantum cascade laser operating at 52 °C, Sensors and Actuators B: Chemical, Vol.290, 426-433 (2019). (SCI一区)
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[5]Sub-ppb nitrogen dioxide detection with a large linear dynamic rangeby use of a differential photoacoustic cell and a 3.5 W blue multimode diode laser, Sensors and Actuators B: Chemical, Vol.247, 329-335 (2017). (SCI一区)
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[6]Highly sensitive SO2 photoacoustic sensor for SF6 decomposition detection using a compact mW-level diode-pumped solid-state laser emitting at 303 nm, Optics Express, Vol. 25, No.26, 32581 (2017). (SCI二区)
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[7]Ppb-level H2S detection for SF6 decomposition based on a fiber-amplified telecommunication diode laser and a background-gas-induced high-Q photoacoustic cell, Applied Physics Letters, Vol.111, 031109 (2017). (SCI二区)
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[8]Impact of Humidity on Quartz-Enhanced Photoacoustic Spectroscopy Based CO Detection Using a Near-IR Telecommunication Diode Laser, Sensors, Vol.16, 162 (2016). (SCI三区)
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[9]esign and optimization of off-beam NO2 QEPAS sensor by use of E-MOCAM with a high power blue laser diode, Acta Physica Sinica, Vol.64, 130701 (2015). (SCI四区)
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[10]Research progress of quartz-enhanced photoacoustic spectroscopy technique, Journal of Atmospheric and Environmental Optics, Vol.10, 3, 197-204 (2015).