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Visible light-induced thymine dimerisation based on large localised field gradient by non-uniform optical near-field

机译:基于非均匀光学近场基于大局部场梯度的可见光致胸腺嘧啶二聚化

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The localised excitations of several molecular reactions utilising optical irradiation have been studied in the field of molecular physics. In particular, deoxyribonucleic acid (DNA) strands organise the genetic information of all living matter. Therefore, artificial methods for freely controlling reactions using only light irradiation are highly desirable for reactions of these strands; this in regard with artificial protein synthesis, regional genetic curing, and stochastic analysis of several genetic expressions. Generally, DNA strands have strong absorption features in the deep ultra-violet (DUV) region, which are related to the degradation and reconstruction of the strand bonding structures. However, irradiation by DUV light unavoidably induces unintended molecular reactions which can damage and break the DNA strands. In this paper, we report a photo-induced molecular reaction initiated by the irradiation of DNA strands with visible light. We utilised photo-dissociation from the vibrational levels induced by non-uniform optical near-fields surrounding nanometric Au particles to which DNA strands were attached. The results were experimentally observed by a reduction in the DUV absorbance of the DNA strands during irradiation. There was a much higher yield of molecular reactions than expected due to the absorbance of visible light, and no defects were caused in the DNA strands.
机译:利用光学辐射的几种分子反应的局部激发已经在分子物理学领域进行了研究。特别是,脱氧核糖核酸(DNA)股线组织了所有生物的遗传信息。因此,对于这些股线的反应,非常需要使用仅光辐射自由控制反应的人工方法;这就是人工蛋白质合成,区域遗传固化和几种遗传表达的随机分析。通常,DNA链具有深紫外(DUV)区域中的强吸收特征,其与股线粘合结构的降解和重建有关。然而,Duv光照射不可避免地诱导意外的分子反应,这可能会损坏和破坏DNA链。在本文中,我们报告了通过用可见光的DNA链照射引发的光学诱导的分子反应。我们利用来自围绕纳米Au颗粒的非均匀光学近场引起的振动水平的光离解。通过在照射期间的DNA链的DUV吸光度降低进行实验观察结果。由于可见光的吸光度,由于可见光的吸光度,分子反应的产率高得多,并且在DNA链中没有缺陷。

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