Atomically Precise Gold Nanoclusters at the Molecular-to Transition With Intrinsic Chirality From Surface Layers
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Date
2023
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Journal ISSN
Volume Title
Publisher
Nature Portfolio
Open Access Color
GOLD
Green Open Access
Yes
OpenAIRE Downloads
73
OpenAIRE Views
125
Publicly Funded
No
Abstract
Chiral metal nanoclusters prepared from achiral ligands generally contain chiral kernel structures. Here, the authors report an alternative type of gold nanoclusters whose intrinsic chirality arises solely from the arrangement of the organic components on their surface. The advances in determining the total structure of atomically precise metal nanoclusters have prompted extensive exploration into the origins of chirality in nanoscale systems. While chirality is generally transferrable from the surface layer to the metal-ligand interface and kernel, we present here an alternative type of gold nanoclusters (138 gold core atoms with 48 2,4-dimethylbenzenethiolate surface ligands) whose inner structures are not asymmetrically induced by chiral patterns of the outermost aromatic substituents. This phenomenon can be explained by the highly dynamic behaviors of aromatic rings in the thiolates assembled via pi - pi stacking and C - H center dot center dot center dot pi interactions. In addition to being a thiolate-protected nanocluster with uncoordinated surface gold atoms, the reported Au-138 motif expands the size range of gold nanoclusters having both molecular and metallic properties. Our current work introduces an important class of nanoclusters with intrinsic chirality from surface layers rather than inner structures and will aid in elucidating the transition of gold nanoclusters from their molecular to metallic states.
Description
He, Jian/0000-0002-3388-3239; Alkan, Fahri/0000-0002-4046-9044; Liu, Dongyi/0000-0002-7990-5018; Luo, Xiaozhou/0000-0001-9808-6890; Guo, Jun/0000-0003-4170-2853
Keywords
DYNAMICS, Science, PLASMONIC NANOSTRUCTURES, Q, NANOPARTICLES, FUNDAMENTALS, RELAXATION, OPTICAL-PROPERTIES, CLUSTERS, EVOLUTION, Article
Turkish CoHE Thesis Center URL
Fields of Science
Citation
WoS Q
Q1
Scopus Q
Q1

OpenCitations Citation Count
27
Source
Nature Communications
Volume
14
Issue
1
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Scopus : 50
PubMed : 9
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Mendeley Readers : 22
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