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Linear Clusters of Gold Nanoparticles in Quasinematic Layers of DNA Liquid-Crystalline Dispersion Particles

机译:DNA液晶分散粒子准运动层中金纳米粒子的线性簇。

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The effects of small size (~2 nm) gold nanoparticles on the properties of particles of cholesteric liquid-crystalline dispersions formed by double-stranded DNA molecules were analyzed. It has been shown that gold nanoparticles induce two different processes. First, they facilitate reorganization of the spatial cho- lesteric structure of dispersion particles to nematic one. This process is accompanied by the fast decrease in the amplitude of abnormal band in the CD spectrum. Second, they can form ensembles consisting of gold nanoparticles. This process is accompanied by the development and displacement of surface plasmon reso- nance band in the visible region of the absorption spectrum. The appearance of this band is analyzed by con- sidering two different models of the formation of ensembles consisting of gold nanoparticles. By small-angle X-ray scattering we performed structural analysis of phases formed by DNA cholesteric liquid-crystalline dis- persion particles treated with gold nanoparticles. As a result of this study it was possible to prove the formation of linear clusters of gold nanoparticles in the “free space” between the adjacent DNA molecules fixed in the quasinematic layers of liquid-crystalline particles. It has been hypothesized that the formation of linear clus- ters of gold nanoparticles is most likely related to DNA molecules, ordered in the spatial structure of quasine- matic layers, and the toxicity of these nanoparticles in biological systems hypothesized.
机译:分析了小尺寸(〜2 nm)金纳米颗粒对双链DNA分子形成的胆甾型液晶分散体颗粒性能的影响。已经表明,金纳米颗粒诱导两个不同的过程。首先,它们有助于将分散颗粒的空间胆甾醇结构重组为向列型。此过程伴随着CD频谱中异常频段幅度的快速下降。其次,它们可以形成由金纳米颗粒组成的集合体。在此过程中,在吸收光谱的可见光区域中,表面等离子体激元共振带的发展和位移。通过考虑由金纳米颗粒组成的集合体的两种不同模型来分析该条带的外观。通过小角度X射线散射,我们对用金纳米粒子处理过的DNA胆甾型液晶分散粒子形成的相进行了结构分析。这项研究的结果有可能证明金纳米颗粒的线性簇在固定在液晶颗粒准运动层中的相邻DNA分子之间的“自由空间”中形成。据推测,金纳米粒子的线性簇的形成最有可能与DNA分子有关,在准生物层的空间结构中排列有序,并假设了这些纳米粒子在生物系统中的毒性。

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