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一种便携式、稳定且精确的激光差示折射仪。

A portable, stable and precise laser differential refractometer.

作者信息

Gong Xiangjun, Ngai To, Wu Chi

机构信息

Department of Chemistry, The Chinese University of Hong Kong, Shatin, N.T., Hong Kong.

出版信息

Rev Sci Instrum. 2013 Nov;84(11):114103. doi: 10.1063/1.4828350.

Abstract

In this work, we present a portable laser differential refractometer with real-time detection and high precision based on the Snell's law and a 2f-2f optical design. The 2f-2f configuration solves a traditional position drifting problem of the laser beam and enhances the signal stability, where a small pinhole is illuminated by the laser light and imaged to the detector by lens placed in the middle between the detector and the pinhole. However, it also leads to a larger dimension of the instrument, limiting its applications and its sensitivity that is proportional to the optical path. Therefore, for a portable device on the basis of the 2f-2f design, a combination of a mirror and a lens was developed to minimize the optical path without affecting the 2f-2f design. Our simple and compact design reaches a resolution of 10(-6) refractive index units (RIU). Moreover, the dimension of such a modified differential refractometer is significantly reduced to be portable. Owing to its real-time detection speed and high precision, this newly developed refractometer is particularly attractive when it is used as an independent and ultra-sensitive detector in many research and industrial applications wherein there is a time-dependent concentration change, e.g., the concentration determination, quality control, and study of kinetic processes in solution, including adsorption, sedimentation, and dissolution, to name few but not limited.

摘要

在这项工作中,我们基于斯涅尔定律和2f-2f光学设计,展示了一种具有实时检测功能和高精度的便携式激光微分折射仪。2f-2f配置解决了激光束传统的位置漂移问题,并增强了信号稳定性,其中一个小针孔被激光照射,并通过置于探测器和针孔之间中间位置的透镜成像到探测器上。然而,这也导致仪器尺寸较大,限制了其应用以及与光程成正比的灵敏度。因此,对于基于2f-2f设计的便携式设备,开发了一种镜子和透镜的组合,以在不影响2f-2f设计的情况下最小化光程。我们简单紧凑的设计实现了10^(-6)折射率单位(RIU)的分辨率。此外,这种改进后的微分折射仪的尺寸显著减小,便于携带。由于其实时检测速度和高精度,这种新开发的折射仪在许多研究和工业应用中用作独立的超灵敏探测器时特别有吸引力,这些应用中存在随时间变化的浓度变化,例如浓度测定、质量控制以及溶液中动力学过程的研究,包括吸附、沉降和溶解等,仅举几例但不限于此。

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