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Biomimetic mineralization of noble metal nanoclusters

机译:贵金属纳米团簇的仿生矿化

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摘要

A number of biological systems have developed highly orchestrated detoxification mechanisms toward the bioreduction and mineralization of noble metals.These systems incorporate small peptides and proteins as nucleation sites for metal binding and nanocluster stabilization.Herein,we present the use of biologically relevant ligands ranging from single amino acids (histidine,imidazole,and cysteine) to linear peptides (glutathione and a histidine rich peptide) in the stabilization of a variety of noble metal surfaces (Au~0,Ag~0,Pt~0,and Cu~0).As a result,the different nanocluster/ligand combinations offered a broad range of sizes and stabilizations.The peptide coat also affords a unique functional handle for the formation of larger assemblis.Using Ni chelation and immunomolecular approaches,strategies for the assembly of nanocluster heterostructures were investigated.
机译:许多生物系统已经开发出高度协调的排毒机制,以实现贵金属的生物还原和矿化。这些系统结合了小的肽和蛋白质作为成核位点,以实现金属结合和纳米团簇的稳定化。氨基酸(组氨酸,咪唑和半胱氨酸)形成线性肽(谷胱甘肽和富含组氨酸的肽),从而稳定了各种贵金属表面(Au〜0,Ag〜0,Pt〜0和Cu〜0)。结果,不同的纳米簇/配体组合提供了广泛的尺寸和稳定性。肽涂层还为形成更大的组装体提供了独特的功能。使用镍螯合和免疫分子方法,纳米簇异质结构的组装策略是调查。

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