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Self-organizing molecular photonic structures based on functionalized synthetic nucleic acid (DNA) polymers

机译:基于功能化合成核酸(DNA)聚合物的自组织分子光子结构

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摘要

Work has been carried out with the objective of imparting the electronic/photonic property of extended Forster energy transfer into organized structures formed by the programmed self-assembly of synthetic nucleic acid units (fluorescent oligonucleotides and polynucleotides). Forster energy transfer is a non-radiative process by which a fluorescent donor molecule excited at one wavelength is able to transfer its absorbed photonic energy efficiently to a fluorescent acceptor molecule, in close proximity, which then re-emits it at a second wavelength. An extended energy transfer system, with multiple donor molecules, could be considered a molecular photonic antenna or amplifier structure. Relatively efficient extended Forster energy transfer was observed in initial experiments involving multiple fluorescent donor and acceptor oligonucleotides. These results provide a clear demonstration of totally synthetic molecules, with highly specific programmable self-assembling properties, organizing into molecular structures with useful electronic/photonic properties.
机译:已经开展了工作,目的是将扩展福斯特能量转移的电子/光子特性赋予由合成核酸单元(荧光寡核苷酸和多核苷酸)的程序化自组装形成的有组织结构。福斯特能量转移是一种非辐射过程,通过该过程,在一个波长上激发的荧光供体分子能够有效地将其吸收的光子能量转移到近距离的荧光受体分子上,然后荧光受体分子以第二个波长重新发射。具有多个供体分子的扩展能量传输系统可以被认为是分子光子天线或放大器结构。在涉及多个荧光供体和受体寡核苷酸的初始实验中观察到相对有效的扩展福斯特能量转移。这些结果清楚地证明了完全合成的分子,具有高度特异性的可编程自组装特性,组织成具有有用电子/光子特性的分子结构。

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  • 来源
    《nanotechnology》 |1991年第4期|165-171|共页
  • 作者

    M J Heller; R H Tullis;

  • 作者单位

    Synthetic Genetics Inc., San Diego, CA, USA;

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  • 原文格式 PDF
  • 正文语种 英语
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