2021
DOI: 10.1002/agt2.11
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Luminescent metal nanoclusters: Biosensing strategies and bioimaging applications

Abstract: Metal nanoclusters (MNCs) are ultrasmall metal‐organic aggregates, composed of a metal core less than 2 nm and a protecting shell of metal‐organic ligand motifs. The controlled aggregation of metal atoms (in the cluster core) and metal‐organic ligand motifs (around the cluster core) renders MNCs with numerous molecule‐like properties, among which strong and bright luminescence has attracted extensive basic and applied interests. It has now known that aggregation‐induced emission is a feasible mechanism for con… Show more

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Cited by 160 publications
(112 citation statements)
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“…[ 97 ] Metal nanoclusters (MNCs) as bioimaging agents have characteristics of deep tissue penetration, and reduced photodamage and background interference. [ 98 ]…”
Section: Applicationmentioning
confidence: 99%
“…[ 97 ] Metal nanoclusters (MNCs) as bioimaging agents have characteristics of deep tissue penetration, and reduced photodamage and background interference. [ 98 ]…”
Section: Applicationmentioning
confidence: 99%
“…Compared with conventional plasmonic Au NPs, ultrasmall Au NPs (1-3 nm in diameter) with atomic-level precision have different properties in optics and magnetism due to enhanced quantum size effects. [155][156][157] Among them, photoluminescence is a unique property of ultrasmall Au NPs' surface state; It has strong emission in the NIR region due to the ultra-small size, 158,159 And ultrasmall Au NPs are paramagnetic. 160,161 After decades of research, people have made significant progress in preparing and applying ultra-small Au NPs.…”
Section: Synthesis High Stable Ultra-small Au Npsmentioning
confidence: 99%
“…And among them, some biomolecule-modified ultra small Au NPs are of great interest due to their specifical targeting and efficient renal clearance efficiency. 158 For example, the ultra-small Au NPs synthesized by mercapto-cyclodextrin have excellent luminescence properties, with maximum excitation intensity at 1050 nm. Surprisingly, imaging was still possible even at a concentration of 1 μM.…”
Section: Bioimagingmentioning
confidence: 99%
“…All of these classes of particular NPs have opened up new research possibilities, in terms of not only addressing fundamental issues, but also expanding the nanomaterials applications. [145][146][147][148][149] Manipulation of the NPs shape is another powerful strategy to obtain favorable characters. In a safer-by-design approach, formulating nanomaterials structure could be an advantageous option to enhance their capabilities, while reducing their potential hazard.…”
Section: Size and Shapementioning
confidence: 99%