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Improved methodologies for synthesis of prenylated xanthones by microwave irradiation and combination of heterogeneous catalysis (K10 clay) with microwave irradiation

机译:微波辐射合成异戊烯基氧杂蒽的改进方法以及微波辐射结合非均相催化(K10粘土)

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摘要

Eleven prenylated xanthone derivatives (4-9, 11-15) have been synthesized for the first time by the microwave irradiation method. Prenylation of the xanthone building blocks 1 and 2 with prenyl bromide in alkaline medium. using microwave irradiation, gave the oxyprenylated xanthones 4 and 6, as major products in high yields, as well as diprenylated by-products (5, 7, 8, and 9) in very low yields. Microwave irradiation of oxyprenylated xanthones 4 and 6 furnished three new Claisen rearranged products (11, 14, and 15), as well as the previously described dihydrofuranoxanthones (12, 13). Furthermore, three new (19, 20, 21) and three previously described (16,17,18) dihydropyranoxanthones have also been prepared by a one-pot synthesis from xanthones 1, 2, and 3, using Montmorillonite 100 clay as a heterogeneous catalyst and a combination of Montmorillonite K10 clay with microwave irradiation in various conditions. The presence of solvent and the type of the clay (commercial or city) were found to have a strong influence on the product yields. This is the first report of using these methodologies for the synthesis of dihydropyranoxanthone derivatives. The structures of the prenylated xanthones obtained were established by IR, UV, HRMS, and NMR (H-1, C-13, HSQC, and HMBC techniques.
机译:通过微波辐射法首次合成了十一种烯丙基化的黄酮酮衍生物(4-9、11-15)。在碱性介质中,异戊二烯基异戊烯与异戊烯基溴化物对异黄酮构成单元1和2进行异戊烯基化。使用微波辐射,可以得到高产量的主要产物氧炔丙基化的氧杂蒽4和6,以及非常低的产率得到二戊烯化的副产物(5、7、8和9)。氧代戊二酰化的氧杂蒽酮4和6的微波辐照提供了三种新的克莱森重排产物(11、14和15),以及先前描述的二氢呋喃并氧杂蒽酮(12、13)。此外,还使用蒙脱土100粘土作为多相催化剂,通过一锅法合成黄原酮1、2和3制备了三种新的(19、20、21)和三种先前描述的(16、17、18)二氢吡喃并氧杂蒽酮。蒙脱土K10粘土与微波在各种条件下的结合。发现溶剂的存在和粘土的类型(商业或城市)对产品收率有很大影响。这是使用这些方法合成二氢吡喃并蒽酮衍生物的第一份报告。通过IR,UV,HRMS和NMR(H-1,C-13,HSQC和HMBC技术)确定获得的烯丙基化氧杂蒽的结构。

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