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Substrate-Free Self-Assembled SiOx-Core Nanodots from Alkylalkoxysilane as a Multicolor Photoluminescence Source for Intravital Imaging

机译:烷基烷氧基硅烷的无底物自组装SiOx-核纳米点作为活体成像的多色光致发光源

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Intravital fluorescence imaging has great potential in biological and biomedical research, as it provides the ability to directly observe biological structures and processes in their natural state. Contrast agents for intravital imaging applications should exhibit good biocompatibility, multiphoton fluorescence, and long emission. Carbon nanodots and semiconductor nanocrystals meet these requirements in most cases, with the added benefit that their properties can be ‘tuned’ for specific applications by controlling the size and surface chemistry of the nanoparticles. Here, we report on a simple heat-assisted strategy to fabricate SiOx-core self-assembled nanodots using self-assembled monolayer (SAM) materials. Our results demonstrate that substrate-free self-assembled nanodots from alkylalkoxysilane exhibit controllable structural and chemical characteristics that are well suited for applications in biological, biomedical, and clinical research, and may find further use in optoelectronic and sensor devices.
机译:活体荧光成像在生物和生物医学研究中具有巨大潜力,因为它提供了直接观察处于自然状态的生物结构和过程的能力。用于活体内成像应用的造影剂应表现出良好的生物相容性,多光子荧光和长发射。碳纳米点和半导体纳米晶体在大多数情况下都满足这些要求,其附加好处是可以通过控制纳米颗粒的大小和表面化学性质来“调整”其性能以适应特定应用。在这里,我们报告了一种使用自组装单层(SAM)材料制造SiOx核自组装纳米点的简单热辅助策略。我们的结果表明,由烷基烷氧基硅烷制成的无底物自组装纳米点具有可控的结构和化学特性,非常适合在生物,生物医学和临床研究中应用,并且可能会在光电和传感器设备中找到进一步的用途。

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