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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Remote Monitoring of a Multi-Component Liquid-Phase Organic Synthesis by Infrared Emission Spectroscopy: The Recovery of Pure Component Emissivities by Band-Target Entropy Minimization
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Remote Monitoring of a Multi-Component Liquid-Phase Organic Synthesis by Infrared Emission Spectroscopy: The Recovery of Pure Component Emissivities by Band-Target Entropy Minimization

机译:红外光谱法对多组分液相有机合成进行远程监测:通过带目标熵最小化回收纯组分的发射率

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摘要

A liquid-phase cycloaddition reaction near ambient temperature involvingdimethyl acetylenedicarboxylate (DMAD) and cyclopentadiene (CP) as reactants was measured using a conventional Fourier transform infrared (FT-IR) spectrometer with an emission accessory. Two semi-batch experiments were performed and a total of 55 spectra were collected using a DTGS detector. Band-target entropy minimization (BTEM), a pure component spectral reconstruction technique, was applied to analyze the data set to retrieve the pure component emission spectrum from the reaction system. The estimated emission spectra of the solvent chloroform, DMAD, CP, and product, namely dimethyl bicyclo[2.2.1]-2,5-heptadiene-2,3-dicarboxylate, were all reconstructed with rather good quality. The estimated emission spectra are similar to independent FT-IR spectra of the same cycloaddition reaction. Using a least squares fit, the relative concentration profiles of the species are obtained. Because this appears to be the first time that a liquid-phase reaction has been monitored by infrared emission spectroscopy, further improvements and opportunities for general multi-phase liquid reaction monitoring are discussed.
机译:使用带有发射附件的常规傅立叶变换红外(FT-IR)光谱仪测量了室温下的液相环加成反应,其中涉及乙炔二甲酸二甲酯(DMAD)和环戊二烯(CP)作为反应物。进行了两次半分批实验,使用DTGS检测器收集了总共55个光谱。采用带目标熵最小化(BTEM)(一种纯组分光谱重建技术)来分析数据集,以从反应系统中检索出纯组分发射光谱。溶剂氯仿,DMAD,CP和产物(即二甲基双环[2.2.1] -2,5-庚二烯-2,3-二羧酸二甲酯)的估计发射光谱均以相当好的质量重建。估算的发射光谱类似于相同环加成反应的独立FT-IR光谱。使用最小二乘拟合,可获得物质的相对浓度曲线。因为这似乎是第一次通过红外发射光谱法监测液相反应,所以讨论了一般多相液相反应监测的进一步改进和机会。

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