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Structural patterns at all scales in a nonmetallic chiral Au133(SR)52 nanoparticle

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TLDR
X-ray crystallography unravels molecular self-assembly and structural ordering on the curved surface of the largest gold nanoparticle, consisting of 133 atoms, and provides a conceptual advance in scientific understanding of pattern structures.
Abstract
Structural ordering is widely present in molecules and materials. However, the organization of molecules on the curved surface of nanoparticles is still the least understood owing to the major limitations of the current surface characterization tools. By the merits of x-ray crystallography, we reveal the structural ordering at all scales in a super robust 133–gold atom nanoparticle protected by 52 thiolate ligands, which is manifested in self-assembled hierarchical patterns starting from the metal core to the interfacial –S–Au–S– ladder-like helical “stripes” and further to the “swirls” of carbon tails. These complex surface patterns have not been observed in the smaller nanoparticles. We further demonstrate that the Au133(SR)52 nanoparticle exhibits nonmetallic features in optical and electron dynamics measurements. Our work uncovers the elegant self-organization strategies in assembling a highly robust nanoparticle and provides a conceptual advance in scientific understanding of pattern structures.

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Atomically Precise Colloidal Metal Nanoclusters and Nanoparticles: Fundamentals and Opportunities

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Surface Coordination Chemistry of Metal Nanomaterials

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[Ag25(SR)18]−: The “Golden” Silver Nanoparticle

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References
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Journal ArticleDOI

A DNA-based Method for Rationally Assembling Nanoparticles Into Macroscopic Materials

TL;DR: A method for assembling colloidal gold nanoparticles rationally and reversibly into macroscopic aggregates by using the specificity of DNA interactions to direct the interactions between particles of different size and composition is described.
Journal ArticleDOI

Structure of a thiol monolayer-protected gold nanoparticle at 1.1 A resolution

TL;DR: The crystallization and x-ray structure determination of a p-mercaptobenzoic acid–protected gold nanoparticle, which comprises 102 gold atoms and 44 p-MBAs, is reported, which is chiral, with the two enantiomers alternating in the crystal lattice.
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Correlating the crystal structure of a thiol-protected Au25 cluster and optical properties.

TL;DR: An unusual single crystal structure of a 25-gold-atom cluster protected by eighteen phenylethanethiol ligands is reported, which violates the empirical golden rule "cluster of clusters", and is in good correspondence with time-dependent density functional theory calculations for the observed structure.
Journal ArticleDOI

The Active Site of Methanol Synthesis over Cu/ZnO/Al2O3 Industrial Catalysts

TL;DR: This work shows how to identify the crucial atomic structure motif for the industrial Cu/ZnO/Al2O3 methanol synthesis catalyst by using a combination of experimental evidence from bulk, surface-sensitive, and imaging methods collected on real high-performance catalytic systems in combination with density functional theory calculations.
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Oligonucleotide-Modified Gold Nanoparticles for Intracellular Gene Regulation

TL;DR: By chemically tailoring the density of DNA bound to the surface of gold nanoparticles, a tunable gene knockdown was demonstrated and it was demonstrated that gold nanoparticle-oligonucleotide complexes are nontoxic to the cells under the conditions studied.
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