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首页> 外文期刊>ACS catalysis >Tandem Reaction Progress Analysis as a Means for Dissecting Catalytic Reactions: Application to the Aza-Piancatelli Rearrangement
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Tandem Reaction Progress Analysis as a Means for Dissecting Catalytic Reactions: Application to the Aza-Piancatelli Rearrangement

机译:串联反应进程分析作为分解催化反应的一种手段:在Aza-Piancatelli重排中的应用

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摘要

Continuing developments in the elucidation techniques of complex catalytic processes is of foremost importance to modern synthetic chemistry, and the identification of efficient synthetic techniques relies on precise, reliable, and adaptable methods to dissect the mechanism of a given transformation. Currently, methods of reaction development are grounded upon the systematic modification of specific variables such as temperature, time, concentration, etc. to account for and control the dynamic series of coupled equilibria within a catalytic environment. On the other hand, tandem reaction analytical methods that involve the concomitant use of different instruments to probe a reaction can provide time-resolved information regarding active chemical species and facilitate the interrogation and optimization of the system. Herein, we report our study applying tandem in situ ReactIR and HPLC-MS monitoring to the dysprosium(III) triflate-catalyzed aza-Piancatelli rearrangement of 2-furylcarbinols, a reaction that grants access to trans-4,5-disubstituted cyclopentenones-common motifs in important biologically relevant and natural compounds. With a prototype automated sampling apparatus, information was obtained about the intrinsic chemoselectivity of the reaction, and previously unseen intermediates were observed, allowing for a more detailed reaction mechanism to be substantiated. The advantages of applying this type of tandem measurement to study these types of systems are also discussed.
机译:复杂催化过程的阐明技术的不断发展对现代合成化学至关重要,有效合成技术的鉴定依赖于精确,可靠和适应性强的方法来剖析给定转化机理。当前,反应发展的方法是基于对特定变量如温度,时间,浓度等的系统修饰,以说明和控制催化环境中偶合平衡的动态序列。另一方面,涉及同时使用不同仪器探测反应的串联反应分析方法可以提供有关活性化学物质的时间分辨信息,并有助于系统的询问和优化。在此,我们报告了将串联ReactIR和HPLC-MS监测应用于三氟甲磺酸(III)催化的2-呋喃甲醇的氮杂-Piancatelli重排的研究,该反应可实现反式-4,5-二取代的环戊烯酮的常见反应重要的生物学相关和天然化合物中的基序。使用原型自动采样设备,可以获得有关反应固有化学选择性的信息,并且可以观察到以前看不见的中间体,从而可以证实更详细的反应机理。还讨论了使用这种串联测量来研究这些类型的系统的优势。

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