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首页> 外文期刊>Biomacromolecules >Luminescent Gold Nanocluster-Decorated Polymeric Hybrid Particles with Assembly-Induced Emission
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Luminescent Gold Nanocluster-Decorated Polymeric Hybrid Particles with Assembly-Induced Emission

机译:发光金纳米烛台装饰的聚合物杂种颗粒,具有组装诱导的发射

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摘要

Ultrasmall gold atom clusters (2 nm in diameter) or gold nanoclusters exhibit emergent photonic properties (near-infrared absorption and emission) compared to larger plasmonic gold particles because of the significant quantization of their conduction band. Although single gold nanocluster properties and applications are being increasingly investigated, little is still known about their behavior and properties when assembled into suprastructures, and even fewer studies are investigating their use for biomedical applications. Here, a simple synthetic pathway combines gold nanoclusters with thermosensitive diblock copolymers of poly(ethylene glycol) (PEG) and poly(N-isopropylacrylamide) (PNIPAm) to form a new class of gold-polymer, micelle-forming, hybrid nanoparticle. The nanohybrids' design is uniquely centered on enabling the temperature-dependent self assembly of gold nanoclusters into the hydrophobic cores of micelles. This nonbulk assembly not only preserves but also enhances the attractive near-infrared photonics of the gold nanoclusters by significantly increasing their native fluorescent signal. In parallel to the fundamental insights into gold nanocluster ordering and assembly, the gold-polymer nanohybrids also demonstrated great potential as fluorescent live-imaging probes in vitro. This innovative material design based on the temperature-dependent, self-assembly of gold nanoclusters within a polymeric micelle's core shows great promise toward bioassays, nanosensors, and nanomedicine.
机译:与较大的等离子体金颗粒相比,超大金原子簇(直径2nm直径为直径)或金纳米或直径近红外吸收和发射,因为它们的导通带显着量化。虽然越来越多地研究了单金纳米烛台的性质和应用,但在组装到超法中时,仍然仍然知道它们的行为和性质,甚至更少的研究正在研究其对生物医学应用的用途。这里,简单的合成途径将金纳米能器与热敏感二嵌段共聚物结合聚(乙二醇)(PEG)和聚(N-异丙基丙烯酰胺)(PNIPAM),形成新的金聚合物,胶束形成的杂交纳米粒子。纳米冬小人的设计是独特的,以使金纳米能量的温度依赖性自组装成胶束的疏水性核心。这种非熔石组件不仅保留,而且还通过显着增加其天然荧光信号来增强金纳米细胞器的吸引力的近红外光子。与对金纳米光幕订购的根本洞察的根本相同,金 - 聚合物纳米胺也表现为体外荧光活成像探针的巨大潜力。这种创新的材料设计基于聚合物胶束内的温度依赖性的自动组装,在聚合物胶束内的核心内展示了朝向生物测定,纳米传感器和纳米医生的许可证。

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  • 来源
    《Biomacromolecules 》 |2018年第7期| 共8页
  • 作者单位

    Univ Utrecht UIPS Dept Pharmaceut Fac Sci Univ Weg 99 NL-3584 CG Utrecht Netherlands;

    Univ Utrecht UIPS Dept Pharmaceut Fac Sci Univ Weg 99 NL-3584 CG Utrecht Netherlands;

    Univ Utrecht UIPS Dept Pharmaceut Fac Sci Univ Weg 99 NL-3584 CG Utrecht Netherlands;

    Univ Utrecht UIPS Dept Pharmaceut Fac Sci Univ Weg 99 NL-3584 CG Utrecht Netherlands;

    Univ Utrecht Electron Microscopy Grp Padualaan 8 NL-3584 CH Utrecht Netherlands;

    Univ Utrecht UIPS Dept Pharmaceut Fac Sci Univ Weg 99 NL-3584 CG Utrecht Netherlands;

    Univ Utrecht UIPS Dept Pharmaceut Fac Sci Univ Weg 99 NL-3584 CG Utrecht Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学 ;
  • 关键词

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