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首页> 外文期刊>Tetrahedron >Alkali metal cations control over nucleophilic substitutions on aromatic fused pyrimidine-2,4-[1H,3H]-diones: Towards new PNA monomers
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Alkali metal cations control over nucleophilic substitutions on aromatic fused pyrimidine-2,4-[1H,3H]-diones: Towards new PNA monomers

机译:碱金属阳离子控制芳族稠合嘧啶-2,4- [1H,3H]-二酮上的亲核取代:朝向新的PNA单体

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摘要

In this paper we report synthesis of a series of aromatic fused pyrimidine-2,4(3H)-dione-1-yl acetic acid and new PNA monomers containing these polycyclic nucleobase analogues. Introduction of a fused aromatic ring onto the 5,6-positions of the pyrimidine-2,4-[1H,3H]-diones brings about the steric effects and the charge delocalization, both weakening the nucleophilic substitutions on the 1- and 3-positions. We found that alkali metal cations play an important role in this alkylation reaction. LiOH brings out a much more efficient alkylation than NaOH does, while KOH nearly does not work on this reaction. Such influences from the alkali metal cations are probably due to that the charge-pairing interactions between the pyrimidine-2,4-dioxide anions and the alkali metal cations rearrange the charge distribution around the whole aromatic system and increase the negative charge distribution on the 1- and 3-nitrogen atoms, which then strengthens the nucleophilic reactivity on these positions.
机译:在本文中,我们报告了一系列芳族稠合嘧啶-2,4(3H)-二酮-1-基乙酸和含有这些多环核碱基类似物的新PNA单体的合成。将稠合的芳环引入嘧啶-2,4- [1H,3H]-二酮的5,6-位会引起空间效应和电荷离域化,均会削弱1-和3-上的亲核取代职位。我们发现碱金属阳离子在该烷基化反应中起重要作用。 LiOH的烷基化效率比NaOH高得多,而KOH在该反应中几乎不起作用。碱金属阳离子的这种影响可能是由于嘧啶-2,4-二氧化物阴离子与碱金属阳离子之间的电荷配对相互作用重新排列了整个芳族体系的电荷分布并增加了1上的负电荷分布-和3-氮原子,从而增强了这些位置的亲核反应性。

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