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Journal ArticleDOI

Tailoring the photoluminescence of atomically precise nanoclusters.

Xi Kang, +1 more
- 15 Apr 2019 - 
- Vol. 48, Iss: 8, pp 2422-2457
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TLDR
Promising applications of metal nanoclusters are reviewed, with particular focus on their potential to impact the fields of chemical sensing, bio-imaging, and bio-labeling, and scope for improvements and future perspectives of these novel nanomaterials are highlighted.
Abstract
Due to their atomically precise structures and intriguing chemical/physical properties, metal nanoclusters are an emerging class of modular nanomaterials. Photo-luminescence (PL) is one of their most fascinating properties, due to the plethora of promising PL-based applications, such as chemical sensing, bio-imaging, cell labeling, phototherapy, drug delivery, and so on. However, the PL of most current nanoclusters is still unsatisfactory-the PL quantum yield (QY) is relatively low (generally lower than 20%), the emission lifetimes are generally in the nanosecond range, and the emitted color is always red (emission wavelengths of above 630 nm). To address these shortcomings, several strategies have been adopted, and are reviewed herein: capped-ligand engineering, metallic kernel alloying, aggregation-induced emission, self-assembly of nanocluster building blocks into cluster-based networks, and adjustments on external environment factors. We further review promising applications of these fluorescent nanoclusters, with particular focus on their potential to impact the fields of chemical sensing, bio-imaging, and bio-labeling. Finally, scope for improvements and future perspectives of these novel nanomaterials are highlighted as well. Our intended audience is the broader scientific community interested in the fluorescence of metal nanoclusters, and our review hopefully opens up new horizons for these scientists to manipulate PL properties of nanoclusters. This review is based on publications available up to December 2018.

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Citations
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Correlating Kernel–Shell Structures with Optical Properties of Pt1Ag24 and Pt1Ag14 Nanoclusters

TL;DR: In this article, the relationship of structures and their properties is explored for designing novel functional nanoclusters and pro-posed functional nan-clusters and functional nanocompositions.
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Weak Anchoring Sites of Thiolate-Protected Luminescent Gold Nanoparticles

TL;DR: In this article, the authors achieved controllable weak anchoring sites of the luminescent AuNPs using a typical thiolate peptide such as glutathione with anchoring groups of SH, ﾿COOH, and NH2.
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A single nucleobase tunes nonradiative decay in a DNA-bound silver cluster

TL;DR: In this paper, the authors studied single-stranded DNA C4AC4TC3XT4 with X = guanosine and inosine that formed a green fluorescent Ag106+ cluster, but these two hosts are distinguished by their binding sites and the brightness of their Ag106 + adducts.
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