材料科学
荧光寿命成像显微镜
光电子学
聚合物
纳米颗粒
超分辨率
人口
时间分辨率
纳米技术
生物成像
荧光
光学
物理
计算机科学
社会学
人口学
人工智能
复合材料
图像(数学)
作者
Yifei Jiang,Qiongzheng Hu,Haobin Chen,Jicheng Zhang,Daniel T. Chiu,Jason McNeill
标识
DOI:10.1002/anie.202006348
摘要
In a conjugated polymer-based single-particle heterojunction, stochastic fluctuations of the photogenerated hole population lead to spontaneous fluorescence switching. We found that 405 nm irradiation can induce charge recombination and activate the single-particle emission. Based on these phenomena, we developed a novel class of semiconducting polymer dots that can operate in two superresolution imaging modes. The spontaneous switching mode offers efficient imaging of large areas, with <10 nm localization precision, while the photoactivation/deactivation mode offers slower imaging, with further improved localization precision (ca. 1 nm), showing advantages in resolving small structures that require high spatial resolution. Superresolution imaging of microtubules and clathrin-coated pits was demonstrated, under both modes. The excellent localization precision and versatile imaging options provided by these nanoparticles offer clear advantages for imaging of various biological systems.
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