Structural order enhances charge carrier transport in self-assembled Au-nanoclusters

scientific article published on 03 December 2020

Structural order enhances charge carrier transport in self-assembled Au-nanoclusters is …
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scholarly articleQ13442814

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P819ADS bibcode2020NatCo..11.6188F
P356DOI10.1038/S41467-020-19461-X
P932PMC publication ID7713068
P698PubMed publication ID33273476

P50authorMarcus ScheeleQ56501816
Frank SchreiberQ83614794
Andreas SchnepfQ88492415
P2093author name stringAlfred J Meixner
Martin Hodas
Andre Maier
Florian Fetzer
Kai Braun
Olympia Geladari
P2860cites workThe relevance of shape and size of Au55 clustersQ37258284
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Electron self-exchange between Au140(+/0) nanoparticles is faster than that between Au38(+/0) in solid-state, mixed-valent films.Q51935879
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Tailoring the photoluminescence of atomically precise nanoclustersQ92152598
Tuning the electronic properties of hexanuclear cobalt sulfide superatoms via ligand substitutionQ92180929
Field Effect and Photoconduction in Au25 Nanoclusters FilmsQ92600030
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Solvent-mediated assembly of atom-precise gold-silver nanoclusters to semiconducting one-dimensional materialsQ94591306
P433issue1
P304page(s)6188
P577publication date2020-12-03
P1433published inNature CommunicationsQ573880
P1476titleStructural order enhances charge carrier transport in self-assembled Au-nanoclusters
P478volume11

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