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使用蒸汽冷凝纳米透镜对细颗粒物和超细颗粒物进行无透镜空气质量监测。

Lensfree Air-Quality Monitoring of Fine and Ultrafine Particulate Matter Using Vapor-Condensed Nanolenses.

作者信息

Baker Maryam, Gollier Florian, Melzer Jeffrey E, McLeod Euan

机构信息

University of Arizona, Wyant College of Optical Sciences, Tucson, Arizona 85721, United States.

出版信息

ACS Appl Nano Mater. 2023 Jun 14;6(13):11166-11174. doi: 10.1021/acsanm.3c01154. eCollection 2023 Jul 14.

Abstract

Current commercial air-quality monitoring devices lack a large dynamic range, especially at the small, ultrafine size scale. Furthermore, there is a low density of air-quality monitoring stations, reducing the precision with which local particulate matter hazards can be tracked. Here, we show a low-cost, lensfree, and portable air-quality monitoring device (LPAQD) that can detect and measure micron-sized particles down to 100 nm-sized particles, with the capability to track and measure particles in real time throughout a day and the ability to accurately measure particulate matter densities as low as 3 μg m. A vapor-condensed film is deposited onto the coverslip used to collect particles before the LPAQD is deployed at outdoor monitoring sites. The vapor-condensed film increases the scattering cross section of particles smaller than the pixel size, enabling the sub-pixel and sub-diffraction-limit-sized particles to be detected. The high dynamic range, low cost, and portability of this device can enable citizens to monitor their own air quality to hopefully impact user decisions that reduce the risk for particulate matter-related diseases.

摘要

当前的商业空气质量监测设备缺乏大动态范围,尤其是在微小的超细尺寸范围内。此外,空气质量监测站的密度较低,降低了追踪本地颗粒物危害的精度。在此,我们展示了一种低成本、无透镜且便携式的空气质量监测设备(LPAQD),它能够检测和测量从微米级颗粒到100纳米级颗粒,具备全天实时追踪和测量颗粒的能力,以及准确测量低至3μg/m的颗粒物密度的能力。在将LPAQD部署到室外监测地点之前,在用于收集颗粒的盖玻片上沉积一层蒸汽冷凝膜。该蒸汽冷凝膜增加了小于像素尺寸的颗粒的散射截面,使得亚像素和亚衍射极限尺寸的颗粒能够被检测到。该设备的高动态范围、低成本和便携性能够让市民自行监测空气质量,有望影响用户决策,降低与颗粒物相关疾病的风险。

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