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首页> 外文期刊>Organic & biomolecular chemistry >Pyrrolyl-, 2-(2-thienyl)pyrrolyl- and 2,5-bis(2-thienyl)pyrrolyl-nucleosides: synthesis, molecular and electronic structure, and redox behaviour of C5-thymidine derivatives
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Pyrrolyl-, 2-(2-thienyl)pyrrolyl- and 2,5-bis(2-thienyl)pyrrolyl-nucleosides: synthesis, molecular and electronic structure, and redox behaviour of C5-thymidine derivatives

机译:吡咯基,2-(2-噻吩基)吡咯基和2,5-双(2-噻吩基)吡咯基-核苷:C5-胸苷衍生物的合成,分子和电子结构以及氧化还原行为

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摘要

A series of modified nucleosides based on thymidine have been prepared by Pd-catalysed cross-coupling between N-alkyl-alkynyl functionalised pyrrolyl- (py), 2-(2-thienyl)pyrrolyl- (tp) or 2,5-bis(2-thienyl)pyrrolyl (tpt) groups with 5-iodo-2'-deoxyuridine. The length of the alkyl chain linking the nucleoside and pyrrolyl-containing unit, N(CH_2)oC=C-nucleoside (where n = 1-3) was also varied. The compounds have been characterised by 'H NMR, ES-MS, UV-vis, cyclic voltammetry (CV) and, in some cases, single-crystal X-ray diffraction. Cyclic voltammetry studies demonstrated that all the py-, tp- and tpt-alkynyl derivatives 1-7 can be electrochemically polymerised to form conductive materials. It was found that increasing the N-alkyl chain length in these cases resulted in only minor changes in the oxidation potential. The same behaviour was observed for the tp- and tpt-modified nucleosides 9-12; however, the py-derivative, 8, produced a poorly conducting material. DFT calculations on the one-electron oxidised cation of the modified nucleosides bearing tp or tpt showed that spin density is located on the pyrrolyl and thienyl units in all cases and that the coplanarity of adjacent rings increases upon oxidation. In contrast, in the corresponding pyrrolyl cases the spin density is distributed over the whole molecule, suggesting that polymerisation does not occur solely at the pyrrolyl-Coe position and the conjugation is interrupted.
机译:通过在N-烷基-炔基官能化的吡咯基-(py),2-(2-噻吩基)吡咯基-(tp)或2,5-bis(pd)之间进行Pd催化的交叉偶联,制备了一系列基于胸苷的修饰核苷。 2-噻吩基)吡咯基(tpt)具有5-碘-2'-脱氧尿苷。连接核苷和含吡咯基的单元的烷基链的长度(N(CH_2)oC = C-核苷(其中n = 1-3))也有所变化。通过1 H NMR,ES-MS,UV-vis,循环伏安法(CV)和在某些情况下单晶X射线衍射对化合物进行了表征。循环伏安法研究表明,所有的py,tp和tpt炔基衍生物1-7均可进行电化学聚合,以形成导电材料。发现在这些情况下增加N-烷基链的长度仅导致氧化电势的微小变化。对于tp-和tpt-修饰的核苷9-12,观察到相同的行为。但是,py衍生物8产生了导电不良的材料。对带有tp或tpt的修饰核苷的单电子氧化阳离子的DFT计算表明,在所有情况下,自旋密度均位于吡咯基和噻吩基单元上,并且相邻环的共面性在氧化时会增加。相反,在相应的吡咯基情况下,自旋密度分布在整个分子上,这表明聚合反应不仅仅在吡咯基-Coe位置发生,并且缀合被中断。

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  • 来源
    《Organic & biomolecular chemistry》 |2011年第5期|p.1555-1564|共10页
  • 作者单位

    Chemical Nanoscience Laboratory, School of Chemistry, NewcastleUniversity, Newcastle upon Tyne, NE1 7RU, U.K;

    Chemical Nanoscience Laboratory, School of Chemistry, NewcastleUniversity, Newcastle upon Tyne, NE1 7RU, U.K;

    Crystallography Laboratory, School of Chemistry, Newcastle University,Newcastle upon Tyne, NE1 7RU, UK;

    Crystallography Laboratory, School of Chemistry, Newcastle University,Newcastle upon Tyne, NE1 7RU, UK;

    Chemical Nanoscience Laboratory, School of Chemistry, NewcastleUniversity, Newcastle upon Tyne, NE1 7RU, U.K;

    Chemical Nanoscience Laboratory, School of Chemistry, NewcastleUniversity, Newcastle upon Tyne, NE1 7RU, U.K;

    Chemical Nanoscience Laboratory, School of Chemistry, NewcastleUniversity, Newcastle upon Tyne, NE1 7RU, U.K;

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