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采用量子级联激光器和平面卤化银波导的红外倏逝场传感

Infrared evanescent field sensing with quantum cascade lasers and planar silver halide waveguides.

作者信息

Charlton Christy, Katzir Abraham, Mizaikoff Boris

机构信息

School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332-0400, and School of Physics and Astronomy, Tel-Aviv University, Tel-Aviv 69978, Israel.

出版信息

Anal Chem. 2005 Jul 15;77(14):4398-403. doi: 10.1021/ac048189a.

Abstract

We demonstrate the first midinfrared evanescent field absorption measurements with an InGaAs/AlInAs/InP distributed feedback (DFB) quantum cascade laser (QCL) light source operated at room temperature coupled to a free-standing, thin-film, planar, silver halide waveguide. Two different analytes, each matched to the emission frequency of a QCL, were investigated to verify the potential of this technique. The emission of a 1650 cm(-1) QCL overlaps with the amide absorption band of urea, which was deposited from methanol solution, forming urea crystals at the waveguide surface after solvent evaporation. Solid urea was detected down to 80.7 microg of precipitate at the waveguide surface. The emission frequency of a 974 cm(-1) QCL overlaps with the CH3-C absorption feature of acetic anhydride. Solutions of acetic anhydride in acetonitrile have been detected down to a volume of 0.01 microL (10.8 microg) of acetic anhydride solution after deposition at the planar waveguide (PWG) surface. Free-standing, thin-film, planar, silver halide waveguides were produced by press-tapering heated, cylindrical, silver halide fiber segments to create waveguides with a thickness of 300-190 microm, a width of 3 mm, and a length of 35 mm. In addition, Fourier transform infrared (FT-IR) evanescent field absorption measurements with planar silver halide waveguides and transmission absorption QCL measurements verify the obtained results.

摘要

我们展示了首次在室温下运行的InGaAs/AlInAs/InP分布反馈(DFB)量子级联激光器(QCL)光源与独立的薄膜平面卤化银波导耦合进行的中红外倏逝场吸收测量。研究了两种不同的分析物,每种都与QCL的发射频率匹配,以验证该技术的潜力。1650 cm⁻¹ QCL的发射与尿素的酰胺吸收带重叠,尿素从甲醇溶液中沉积,溶剂蒸发后在波导表面形成尿素晶体。在波导表面检测到低至80.7微克沉淀的固体尿素。974 cm⁻¹ QCL的发射频率与乙酸酐的CH₃-C吸收特征重叠。在平面波导(PWG)表面沉积后,已检测到乙腈中乙酸酐溶液低至0.01微升(10.8微克)的乙酸酐溶液。通过对加热的圆柱形卤化银纤维段进行压锥来制造独立的薄膜平面卤化银波导,以创建厚度为300 - 190微米、宽度为3毫米、长度为35毫米的波导。此外,使用平面卤化银波导的傅里叶变换红外(FT - IR)倏逝场吸收测量和透射吸收QCL测量验证了所得结果。

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