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首页> 外文期刊>ChemistryOpen >Control of Energy Transfer Between Pyrene‐ and Perylene‐Nucleosides by the Sequence of DNA‐Templated Supramolecular Assemblies
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Control of Energy Transfer Between Pyrene‐ and Perylene‐Nucleosides by the Sequence of DNA‐Templated Supramolecular Assemblies

机译:通过DNA模板的超分子组件序列控制比芘和核苷酸之间的能量转移

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DNA was used as supramolecular scaffold to order chromophores and control their optical properties. Ethynylpyrene as energy donor was attached to 2′‐desoxy‐2‐aminoadenosine that binds selectively to thymidines (T) in the template. Ethynylperylene as acceptor was attached to 2′‐desoxyuridine that is complementary to 2′‐desoxyadenosine (A). This donor‐acceptor pair was assembled along single‐stranded DNA templates of different A?T sequences to investigate the sequence control of the energy transfer between the chromophores. The fluorescence intensities increase in the mixed assemblies along the DNA templates from A10T10 over (AATT)5 to (AT)10, although these templates provide equal numbers of potential binding sites for the two different nucleoside chromophore conjugates and exhibit similar absorbances. This shows that the sequence selective assembly of the two building blocks along DNA templates is programmable and alters the fluorescence readout. Such sequence‐controlled supramolecular chemistry represents the key element for future functional π‐systems in materials for light harvesting of solar energy.
机译:DNA被用作超分子支架以进行发色团并控制它们的光学性质。作为能量供体作为能量供体的乙炔芘连接到2'-解氧-2-氨基核苷酸,其在模板中选择性地结合胸膜肾脉(T)。作为受体的乙炔基亚乙烯连接到2'-脱氧尿苷,其与2'-脱氧腺苷(a)互补。该供体受体对沿不同AβT序列的单链DNA模板组装,以研究发色团之间的能量转移的序列控制。荧光强度沿着DNA模板从A10T10(AATT)5沿(ATT)5(AT)10的DNA模板增加,尽管这些模板为两种不同的核苷发色团缀合物提供了相同数量的潜在结合位点并且表现出类似的吸收。这表明两个建筑物沿DNA模板的序列选择性组装是可编程的,并改变荧光读数。这种序列控制的超分子化学代表了用于太阳能的光学利用材料中未来功能π系统的关键元件。

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