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不需制备样品与获得期望强度的红外单光束谱(英文)

To Obtain an Infrared Single Beam Spectrum with a Desired Intensity without Sample Preparation
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摘要 为扣除溶剂或其他背景组分的干扰,测量红外光谱时常常需要获得期望强度的高质量背景单光束谱。通常,实验上获得期望强度的背景谱是极其困难的。为实现这一重要且十分困难的目标,引进了杂化单光束谱的概念。同一溶液但不同厚度的b1和b2的两样品的单光束谱分别为b1和b2,则定义它们的线性组合α=αb1+(1-α)b2为杂化单光束谱,其中α(0≤α≤1)称为组分因子。调整组分因子α数值,就可以精确调控杂化谱的强度。在合适的条件下,杂化谱α与厚度为b2-αb2+αb1的真实样品的光谱高度类似,即b2-αb2+αb1≈α。因此,不用制备厚度为b2-αb2+αb1的样品,其单光束谱可以用α来替代。随着α变化,可以得到不同的α,厚度在b1和b2间的真实样品的单光束谱都可用相应的α来替代。实验结果证实,杂化谱提供了一种简单和易操作的扣除背景干扰的高效方法。 In order to compensate for solvent bands and other background effects,a successful infrared(IR)spectral measurement requires a quality single-beam background spectrum with a desired intensity.Usually,it is extremely difficult to bring a background component to the desired intensity in practice.In order to achieve this important but difficult goal,a hybrid single-beam spectrumα=αb1+(1-α)b2is introduced as the combination of two single-beam spectrab1andb2from the same sample but with different pathlengths(b1and b2),whereα(0≤α≤1)is the component factor.Obviously,the intensity of the hybrid spectrumαcan be controlled easily to the desired point by simply choosing an appropriate component factor.Under appropriate conditions,the hybrid spectrumαis very nearly identical to the single-beam spectrum obtained from the real sample with the pathlength of b2-αb2+αb1and the minor spectral distortion ofαcan be dismissed.As a result,the single-beam spectrum of a real sampleb with a pathlength of b2-αb2+αb1can be represented byαand the real sample does not need to be prepared.Experimentally,the hybrid single-beam spectrum provides a very simple,robust and efficient method to overcome the interference from background samples of IR measurements and shows valuable potential in applications of this field.
出处 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2017年第5期1581-1586,共6页 Spectroscopy and Spectral Analysis
基金 Natural Science Foundation of China(20873136) the Fundamental Research Funds for the Central Universities(2015ZM050)
关键词 红外光谱 杂化单光束谱 光谱失真 背景扣除 光谱类似性 Infrared spectroscopy Hybrid single-beam spectrum Spectral distortion Background elimination Spectral similarity
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