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Near-Infrared Emission Spectrometry Based on an Acousto-Optical Tunable Filter

机译:基于声光可调滤波器的近红外发射光谱

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A spectrometer has been constructed to detect the radiation emitted by thermally excited samples in the nearinfrared spectral region extending from 1500 to 3000 nm. The instrument employs an acousto-optical tunable filter (AOTF) made of TeO_2 and attains maximum sensitivity by making effective use of the two diffracted beams produced by the anisotropic AOTF. The full exploitation of the transmitted power of the monochromatic beams is reported for the first time and became possible because the detector does not saturate when employed for the acquisition of the weak emission signal in the NIR region, even when exposed to the total (nondiffracted) beam. Thus, modulation and lock-in-based detection can be employed to find the intensity of the diffracted beams superimposed on the nondiffracted beam. The resolution is slighted degraded in view of the small (approx 10 nm) difference in the wavelengh diffracted in the ordinary and extraordinary beams. The instrument has been evaluated in terms of signal-to-noise ratio, effect of sample thickness, and excitation temperature and for its potential in analytical applications in monitoring high-temperature kinetics, for qualitative identification of inorganic solids, for use with a closed cell to obtain spectra of species that evaporate at the temperatures (> 150 deg C) necessary for sample excitation, and for quantitative purposes in the determination of soybean oil content in olive oil. The feasibility Of near-infrared emission spectroscopy has been demonstrated together with some of its advantages over mid-infrared emission spectroscopy, such as greater tolerance to sample thickness, suitable signal-to-noise, and its use in the investigation of kinetic phenomena and phase transitions at high temperatures.
机译:已经构造了光谱仪以检测由热激发的样品在从1500到3000 nm延伸的近红外光谱区域中发出的辐射。该仪器采用了由TeO_2制成的声光可调滤波器(AOTF),并通过有效利用各向异性AOTF产生的两个衍射光束来获得最大的灵敏度。首次报道了单色光束的发射功率的充分利用,并成为可能,因为当将探测器用于近红外区域中的微弱发射信号的采集时,即使暴露于总光束(未衍射),探测器也不会饱和光束。因此,可以采用基于调制和基于锁定的检测来找到叠加在非衍射光束上的衍射光束的强度。鉴于在普通光束和非常规光束中衍射的波长之间存在很小的差异(约10 nm),分辨率会略有下降。已对该仪器进行了信噪比,样品厚度和激发温度的影响方面的评估,以及在分析应用中监测高温动力学,定性鉴定无机固体,与密闭隔室一起使用方面的潜力以获得在激发样品所需的温度(> 150℃)下蒸发以及在定量分析橄榄油中的大豆油含量中所需定量的物质。与中红外发射光谱相比,近红外发射光谱的可行性已经得到证明,并且具有一些优势,例如对样品厚度的耐受性更高,合适的信噪比以及在动力学现象和相位研究中的应用。在高温下转变。

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