InnoChemTech GmbH, Hagenring 30, 38106 Braunschweig, Germany.
Institut für Anorganische und Analytische Chemie, Technische Universität 'Carola-Wilhelmina' Braunschweig, Hagenring 30, 38106 Braunschweig, Germany.
Molecules. 2021 Jun 2;26(11):3357. doi: 10.3390/molecules26113357.
The substance class of the well-known alkaloids is widened by 6'-Amino-cinchonine and 6'-Amino-cinchonidine, novel compounds which incorporate a primary amino function in the quinolinic ring system. These key intermediates open the field for a range of fruitful chemistry. Here is described a short and direct pathway for the synthesis of triazole containing derivatives of the above-mentioned substances using the [3 + 2] Huisgen cycloaddition. For this purpose, the amines were first converted into the corresponding azides. Based on this, non-substituted and silyl-protected triazoles were synthesized as examples. Furthermore, didehydrated derivatives of quincorine and quincoridine were used as addition partners, resulting in compounds that carry the quinuclidine ring of the cinchona alkaloids at both ends. Some of these compounds were examined radiographically to investigate the position of the quinuclidine ring to the triazole. The solid-state structures of compounds , and were determined by X-ray diffraction analyses.
将 6'-氨基奎宁和 6'-氨基辛可宁这两种在喹啉环系统中引入伯氨基官能团的新型化合物纳入著名生物碱的物质类别,拓宽了该物质类别。这些关键的中间体为一系列富有成效的化学研究开辟了道路。本文描述了一种使用[3+2]Huisgen 环加成反应合成上述物质中含三唑的衍生物的短捷直接途径。为此,首先将胺转化为相应的叠氮化物。在此基础上,作为实例合成了未取代和硅基保护的三唑。此外,还将奎宁和奎宁定的二脱水衍生物用作加成试剂,得到了两端都带有金鸡纳生物碱的奎宁啶环的化合物。对其中一些化合物进行了放射性研究,以调查奎宁啶环在三唑中的位置。通过 X 射线衍射分析确定了化合物 、 和 的固态结构。