том 13 издание 36 страницы 15394-15402

Isolation of the Au145(SR)60X compound (R = n-butyl, n-pentyl; X = Br, Cl): novel gold nanoclusters that exhibit properties subtly distinct from the ubiquitous icosahedral Au144(SR)60 compound

Tiziano Dainese 1
Sabrina Antonello 1
Sara Bonacchi 1
Daniel Morales Martinez 1
Alfonso Venzo 2
David M Black 3
M Mozammel Hoque 4
Robert Whetten 4
Flavio Maran 1, 5
Тип публикацииJournal Article
Дата публикации2021-09-01
scimago Q1
wos Q1
БС1
SJR1.245
CiteScore9.9
Impact factor5.1
ISSN20403364, 20403372
General Materials Science
Краткое описание
We report the identification and quantitative isolation of Au145(SR)60X (R = n-butyl, n-pentyl; X = halide) along with elucidation of key properties as compared to the corresponding ubiquitous chiral-icosahedral Au144(SR)60 cluster known to have a central vacancy. The stoichiometries were assessed by electrospray mass spectrometry (ESI-MS) at isotopic resolution, and induced dissociation patterns indicate the ‘extra’ (Au,Br) atoms are strongly bound components of these structures. Voltammetric and spectroscopic characterization reveals Au145(SR)60X behaviors that are qualitatively similar to yet fascinatingly distinct from those of Au144(SR)60. (1H,13C)-NMR spectra clearly show how both Au145(SR)60X and Au144(SR)60 are capped by 12 distinct ligand types of 5-fold equivalence, as was recently established for Au144(SR)60 capped by shorter ligands, demonstrating that this novel cluster shares the same chiral-icosahedral motif. Intriguingly, Au145(SR)60X is strongly near-IR luminescent, whereas under comparable conditions Au144(SR)60 barely emits. The photoluminescence pattern of Au145(SR)60X is very similar to that observed for Au25(SR)18, which contains the Au13 core. The combined results are interpreted as consistent with neutral Au145(SR)60X as a diamagnetic species, electronically and structurally similar to the corresponding Au144(SR)60 compounds.
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Dainese T. et al. Isolation of the Au145(SR)60X compound (R = n-butyl, n-pentyl; X = Br, Cl): novel gold nanoclusters that exhibit properties subtly distinct from the ubiquitous icosahedral Au144(SR)60 compound // Nanoscale. 2021. Vol. 13. No. 36. pp. 15394-15402.
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Dainese T., Antonello S., Bonacchi S., Morales Martinez D., Venzo A., Black D. M., Mozammel Hoque M., Whetten R., Maran F. Isolation of the Au145(SR)60X compound (R = n-butyl, n-pentyl; X = Br, Cl): novel gold nanoclusters that exhibit properties subtly distinct from the ubiquitous icosahedral Au144(SR)60 compound // Nanoscale. 2021. Vol. 13. No. 36. pp. 15394-15402.
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TY - JOUR
DO - 10.1039/d1nr04745k
UR - https://xlink.rsc.org/?DOI=D1NR04745K
TI - Isolation of the Au145(SR)60X compound (R = n-butyl, n-pentyl; X = Br, Cl): novel gold nanoclusters that exhibit properties subtly distinct from the ubiquitous icosahedral Au144(SR)60 compound
T2 - Nanoscale
AU - Dainese, Tiziano
AU - Antonello, Sabrina
AU - Bonacchi, Sara
AU - Morales Martinez, Daniel
AU - Venzo, Alfonso
AU - Black, David M
AU - Mozammel Hoque, M
AU - Whetten, Robert
AU - Maran, Flavio
PY - 2021
DA - 2021/09/01
PB - Royal Society of Chemistry (RSC)
SP - 15394-15402
IS - 36
VL - 13
PMID - 34499056
SN - 2040-3364
SN - 2040-3372
ER -
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@article{2021_Dainese,
author = {Tiziano Dainese and Sabrina Antonello and Sara Bonacchi and Daniel Morales Martinez and Alfonso Venzo and David M Black and M Mozammel Hoque and Robert Whetten and Flavio Maran},
title = {Isolation of the Au145(SR)60X compound (R = n-butyl, n-pentyl; X = Br, Cl): novel gold nanoclusters that exhibit properties subtly distinct from the ubiquitous icosahedral Au144(SR)60 compound},
journal = {Nanoscale},
year = {2021},
volume = {13},
publisher = {Royal Society of Chemistry (RSC)},
month = {sep},
url = {https://xlink.rsc.org/?DOI=D1NR04745K},
number = {36},
pages = {15394--15402},
doi = {10.1039/d1nr04745k}
}
MLA
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Dainese, Tiziano, et al. “Isolation of the Au145(SR)60X compound (R = n-butyl, n-pentyl; X = Br, Cl): novel gold nanoclusters that exhibit properties subtly distinct from the ubiquitous icosahedral Au144(SR)60 compound.” Nanoscale, vol. 13, no. 36, Sep. 2021, pp. 15394-15402. https://xlink.rsc.org/?DOI=D1NR04745K.