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gamma-Glutamylcysteine- and Cysteinylglycine-Directed Growth of Chiral Gold Nanoparticles and their Crystallographic Analysis

机译:γ-谷氨酸细胞和半胱氨酸甘氨酸 - 引导的手性金纳米粒子的生长及其结晶分析

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摘要

Chiral optical metamaterials with delicate structures are in high demand in various fields because of their strong light-matter interactions. Recently, a scalable strategy for the synthesis of chiral plasmonic nanoparticles (NPs) using amino acids and peptides has been reported. Reported herein, 3D chiral gold NPs were synthesized using dipeptide gamma-Glu-Cys and Cys-Gly and analyzed crystallographically. The gamma-Glu-Cys-directed NPs present a cube-like outline with a protruding chiral wing. In comparison, the NPs synthesized with Cys-Gly exhibited a rhombic dodecahedron-like outline with curved edges and elliptical cavities on each face. Morphology analysis of intermediates indicated that gamma-Glu-Cys generated an intermediate concave hexoctahedron morphology, while Cys-Gly formed a concave rhombic dodecahedron. NPs synthesized with Cys-Gly are named 432 helicoid V because of their unique morphology and growth pathway.
机译:由于其强烈的浅点相互作用,各种领域的手性光学超材料在各个领域处于高需求。 最近,已经报道了使用氨基酸和肽合成手性等离子体纳米颗粒(NPS)的可扩展策略。 本文报道,3D手性金NPS使用二肽γ-glu-cys和Cys-gly合成并在晶体上进行分析。 伽玛 - Glu-Cys定向的NPS呈现像突出的手表翼的立方体样轮廓。 相比之下,用Cys-Gly合成的NPS呈现出菱形十二锭状轮廓,在每张面上具有弯曲边缘和椭圆形腔。 中间体的形态分析表明,γ-胶层产生中间凹六射出的形态,而Cys-Gly形成了一个凹形菱形十二锭。 由于其独特的形态和生长途径,用Cys-Gly合成的NPS被命名为432螺旋V。

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