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Simultaneous Synthesis of Temperature-Tunable Peptide and Gold Nanoparticle Hybrid Spheres

机译:同时合成温度可调肽和金纳米颗粒杂化球

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摘要

Hybrid spheres containing peptides and gold nanoparti-cles have been simultaneously synthesized in water using AG4 (NPSSLFRYLPSD) peptides that acted as a reducing agent to guide the nucleation and growth of gold nanoparticles and a precursor to form sphere-like structure by self-assembly where the size of hybrid spheres is precisely controlled by adjusting the operating temperature. The self-assembled peptide spheres remain stable even after selective removal of the gold nanoparticles by iodide etching. The amino acids containing the aromatic functional group in the peptide sequence significantly affect the construction of sphere structures. The surface of gold nanoparticles containing hybrid spheres has been functionalized using the thiol group linked to biomolecules. The ability to synthesize nanoparticle and self-assembled peptide structures with controlled size and composition in anenvironmental benign way will allow us to fabricate a new class of multifunctional organic-inorganic hybrid superstructures for various biomedical and electronic applications.
机译:使用AG4(NPSSLFRYLPSD)肽在水中同时合成了包含肽和金纳米颗粒的杂化球,该肽充当还原剂,指导金纳米颗粒和前体的成核和生长,并通过自组装形成球形结构,其中混合球的大小可通过调节工作温度来精确控制。自组装肽球即使在通过碘化物蚀刻选择性去除金纳米颗粒后仍保持稳定。肽序列中含有芳族官能团的氨基酸会显着影响球结构的构建。包含杂化球的金纳米颗粒的表面已使用与生物分子连接的巯基进行了功能化。以环境良性方式合成尺寸和组成可控的纳米粒子和自组装肽结构的能力将使我们能够为各种生物医学和电子应用制造一类新型的多功能有机-无机杂化超结构。

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