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A Versatile Protocol for the Synthesis of Pyrazolyl-Substituted Pyridinium and Guanidinium Salts from Pyridone and Urea Derivatives

机译:从吡啶酮和尿素衍生物合成吡唑基取代的吡啶鎓和胍盐的多功能方案

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摘要

The trication (pyr(3)P(2))(3+) (1(+), pyr = 3,5-dimethylpyrazolyl) is used as a convenient pyrazolyl-transfer reagent to convert 2-pyridones, 4-pyridones, and urea derivatives to pyrazolyl-substituted pyridinium or guanidinium triflate salts. This conversion represents a new, efficient, and highly functional-group-compatible approach that yields the desired products conveniently and in high yields. Typically, this reaction proceeds by exchange of the carbonyl oxygen atom of the substrate for a pyrazolyl moiety. However, for the structurally related 3-hydroxypyridines, a different reaction pathway occurs to give tripyridyl phosphites. The outcome of the reaction can be explained by the lactam-lactim tautomerism of the substrate and is discussed in detail. All reaction products were fully characterized by elemental analysis and multinuclear NMR, IR, and Raman spectroscopy, and the structural arrangements of most of the products were confirmed by X-ray crystallography analysis.
机译:三阳离子(pyr(3)P(2))(3+)(1(+),pyr = 3,5-二甲基吡唑基)用作方便的吡唑基转移试剂,可转化2-吡啶酮,4-吡啶酮和脲衍生物为吡唑基取代的吡啶鎓或三氟甲磺酸胍盐。这种转化代表了一种新的,高效的,高度官能团兼容的方法,该方法可以方便地高产地生产所需的产品。通常,该反应通过将底物的羰基氧原子交换为吡唑基部分而进行。然而,对于结构上相关的3-羟基吡啶,发生了不同的反应途径以得到亚磷酸三吡啶酯。反应的结果可以通过底物的内酰胺-内酰胺互变异构来解释,并进行了详细讨论。所有反应产物均通过元素分析和多核NMR,IR和拉曼光谱进行了充分表征,并且大多数产物的结构排列均通过X射线晶体学分析得以证实。

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