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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Mid-infrared monitoring of gas-liquid reactions in vitamin D analogue synthesis with a novel fiber optical diamond ATR sensor
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Mid-infrared monitoring of gas-liquid reactions in vitamin D analogue synthesis with a novel fiber optical diamond ATR sensor

机译:用新型光纤钻石ATR传感器对维生素D类似物合成中的气液反应进行中红外监测

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摘要

A novel mid-infrared optical sensor enabling in situ ATR measurements was applied to investigate several steps of a vitamin D analogue synthesis. The probe based on silver halide fibers coupled to a diamond prism was connected to a conventional FTIR spectrometer with internal MCT detector. All steps of the reaction were monitored by real-time in situ FTIR measurements. The steps carried out were the dissolution of SO2 in a CH2Cl2/CH3OH solvent mixture as well as the addition of SO2 to a vitamin D analogue, the subsequent ozonation of the double bond in the SO2 addition product, and the following reduction of the formed hydroperoxide with triphenylphosphine. The dissolving process of SO2 and the addition of SO2 to the vitamin D analogue were monitored by changing the characteristic v(as)(SO2) and v(s)(SO2) modes of dissolved and incorporated SO2. It was found that during ozonation of the SO2 addition product the formation of hydroperoxide is accompanied by the simultaneous formation of the corresponding aldehyde identified by the typical v(C=O) band at 1720 cm(-1). Extended ozone exposure favors the formation of the corresponding acid detected by an additional carbonyl band at lower wavenumbers. During the reaction with triphenylphosphine the increasing intensity of the aldehyde band and the appearance of the v(P=O) mode of the formed triphenylphosphine oxide indicate the progressive reduction of hydroperoxide. The hydroperoxide band disappears completely during the reaction whereas the v(as)(SO2) band remains unaffected.
机译:一种新型的中红外光学传感器能够进行原位ATR测量,用于研究维生素D类似物合成的几个步骤。将基于卤化银纤维的耦合到金刚石棱镜的探头连接到带有内部MCT检测器的常规FTIR光谱仪。反应的所有步骤均通过实时原位FTIR测量进行监控。进行的步骤是将SO2溶解在CH2Cl2 / CH3OH溶剂混合物中,以及将SO2添加到维生素D类似物中,随后在SO2加成产物中双键臭氧化,以及随后还原形成的氢过氧化物与三苯膦。通过改变溶解和掺入的SO2的特征v(as)(SO2)和v(s)(SO2)模式来监控SO2的溶解过程和向维生素D类似物中添加SO2。发现在臭氧氧化SO 2加成产物期间,氢过氧化物的形成伴随有同时形成的相应的醛,该醛由在1720 cm(-1)处的典型v(C = O)谱带识别。延长的臭氧暴露时间有利于形成由较低波数下的附加羰基带检测到的相应酸。在与三苯膦反应期间,醛带的强度增加,并且所形成的三苯膦氧化物的v(P = O)模式出现,表明氢过氧化物逐渐还原。在反应过程中氢过氧化物带完全消失,而v(as)(SO2)带保持不受影响。

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