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中红外多光谱检测实时、非侵入式分析材料的结构和组成。

Midinfrared Multispectral Detection for Real-Time and Noninvasive Analysis of the Structure and Composition of Materials.

出版信息

ACS Sens. 2018 Jul 27;3(7):1322-1328. doi: 10.1021/acssensors.8b00222. Epub 2018 Jul 18.

Abstract

In situ material identification and object tracking have been demonstrated using a mid-infrared (mid-IR) robotic scanning system. This detection method is capable of inspecting materials noninvasively because the mid-IR spectrum overlaps with numerous characteristic absorption bands corresponding to various chemical function groups. The scanning system consisted of a fiber probe connected to a mid-IR tunable laser with a wavelength tuning range of λ = 2.45-3.75 μm. For the high-speed performance of the scanning system to be evaluated, a testing platform was constructed with an object plate rapidly rotating at ω = 231 rpm. The objects on the plate were SU-8 epoxy-based resin and polydimethylsiloxane, which were mid-IR absorptive while visibly transparent. Applying mid-IR multispectral scanning, the system was able to simultaneously track the object position and identify the composition by interpreting the spectral and spatial intensity variation. The mid-IR robotic scanning method thus provides a visualization system critical for process inspection in automatic manufacturing and high-throughput biomedical screening.

摘要

利用中红外(mid-IR)机器人扫描系统已经实现了原位材料识别和目标跟踪。这种检测方法能够对材料进行非侵入式检测,因为 mid-IR 光谱与许多对应于各种化学官能团的特征吸收带重叠。扫描系统由一个与中红外可调谐激光器相连的光纤探头组成,该激光器的波长调谐范围为 λ = 2.45-3.75 μm。为了评估扫描系统的高速性能,构建了一个测试平台,其中物体板以 ω = 231 rpm 的速度快速旋转。板上的物体是 SU-8 环氧基树脂和聚二甲基硅氧烷,它们对 mid-IR 具有吸收性,同时也是可见透明的。通过 mid-IR 多光谱扫描,系统能够通过解释光谱和空间强度变化来同时跟踪目标位置并识别组成。因此,中红外机器人扫描方法为自动制造和高通量生物医学筛选中的过程检测提供了关键的可视化系统。

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