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首页> 外文期刊>Journal of physical chemistry letters >In Situ Generated Silver Nanodot Forster Resonance Energy Transfer Pair Reveals Nanocage Sizes
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In Situ Generated Silver Nanodot Forster Resonance Energy Transfer Pair Reveals Nanocage Sizes

机译:原位生成的银纳米型福尔斯特共振能量转移对显示纳米尺寸

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Characterizing nanocages in macromolecules is one of the keys to understanding various biological activities and further utilizing nanocages for novel materials synthesis. However, fast and straightforward detection of the nanocage size remains challenging. Here, we present a new approach to detect the diameter of a nanocage by Forster resonance energy transfer (FRET) of luminescent silver nanodot pairs with reverse micelles as a model. Silver nanodot FRET pairs can be generated in situ from a single silver nanodot species with critical energy transfer distances, R-0, of 4.8-6.5 nm. We have applied this approach to clarify the size variation of the water nanocage in nonionic surfactant Triton X-100-based reverse micelles. FRET efficiency decreases as more water is added, indicating that the size of the reverse micelles continuously expands with water content. The silver element in the nanocage also enhances the visualization of the nanocage under cryo-TEM imaging. The diameter of the water nanocage measured with the above approach is consistent with that obtained by cryo-TEM, demonstrating that the FRET measurement of silver nanodots can be a fast and accurate tool to detect nanocage dimensions. The above demonstration allows us to apply our strategy to other protein-based nanocages.
机译:在大分子中表征纳米病是理解各种生物活性的键之一,进一步利用纳米物种用于新型材料合成。然而,纳米尺寸的快速和直接检测仍然挑战。在这里,我们提出了一种新的方法来检测孔谐振能量转移(FRET)的沿着发光银纳米型对的纳米图像的直径,作为模型。可以从单个银纳米型物种原位产生银纳米型褶皱对,其临界能量转移距离R-0为4.8-6.5nm。我们已经应用这种方法来阐明基于非离子表面活性剂Triton X-100的反胶束中的水纳米腔的尺寸变化。随着添加水的增加,FRET效率降低,表明反向胶束的尺寸连续地膨胀水含量。纳米腔内的银元素还增强了在Cryo-TEM成像下纳米的可视化。用上述方法测量的水纳米腔的直径与冷冻温度获得的一致,表明银纳米纸的FRET测量可以是检测纳米尺寸的快速准确的工具。以上演示允许我们将我们的策略应用于其他基于蛋白质的纳米病。

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