Kirsi Salorinne
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Explore the profile of Kirsi Salorinne including associated specialties, affiliations and a list of published articles.
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19
Citations
184
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Recent Articles
1.
Salorinne K, Man R, Lummis P, Hazer M, Malola S, Yim J, et al.
Chem Commun (Camb)
. 2020 May;
56(45):6102-6105.
PMID: 32355943
The preparation of a novel Au cluster bearing a bidentate mixed carbene-thiolate ligand is presented. The length of linker between the central benzimidazole and thiolate has a strong effect on...
2.
Narouz M, Osten K, Unsworth P, Man R, Salorinne K, Takano S, et al.
Nat Chem
. 2019 Apr;
11(5):419-425.
PMID: 30988416
Magic-number gold nanoclusters are atomically precise nanomaterials that have enabled unprecedented insight into structure-property relationships in nanoscience. Thiolates are the most common ligand, binding to the cluster via a staple...
3.
Tofanelli M, Salorinne K, Ni T, Malola S, Newell B, Phillips B, et al.
Chem Sci
. 2018 Jun;
7(3):1882-1890.
PMID: 29899911
The relationship between oxidation state, structure, and magnetism in many molecules is well described by first-order Jahn-Teller distortions. This relationship is not yet well defined for ligated nanoclusters and nanoparticles,...
4.
Salorinne K, Man R, Li C, Taki M, Nambo M, Crudden C
Angew Chem Int Ed Engl
. 2017 Apr;
56(22):6198-6202.
PMID: 28407403
NHC-Au complexes were used to prepare stable, water-soluble, NHC-protected gold nanoparticles. The water-soluble, charged nature of the nanoparticles permitted analysis by polyacrylamide gel electrophoresis (PAGE), which showed that the nanoparticles...
5.
Liu J, Jian N, Ornelas I, Pattison A, Lahtinen T, Salorinne K, et al.
Ultramicroscopy
. 2017 Mar;
176:146-150.
PMID: 28342572
Monolayer-protected (MP) Au clusters present attractive quantum systems with a range of potential applications e.g. in catalysis. Knowledge of the atomic structure is needed to obtain a full understanding of...
6.
Salorinne K, Malola S, Wong O, Rithner C, Chen X, Ackerson C, et al.
Nat Commun
. 2016 Jan;
7:10401.
PMID: 26791253
Inorganic nanoparticles, stabilized by a passivating layer of organic molecules, form a versatile class of nanostructured materials with potential applications in material chemistry, nanoscale physics, nanomedicine and structural biology. While...
7.
Martikainen M, Salorinne K, Lahtinen T, Malola S, Permi P, Hakkinen H, et al.
Nanoscale
. 2015 Oct;
7(41):17457-67.
PMID: 26440968
Visualization and tracking of viruses without compromising their functionality is crucial in order to understand virus targeting to cells and tissues, and to understand the subsequent subcellular steps leading to...
8.
Koivisto J, Salorinne K, Mustalahti S, Lahtinen T, Malola S, Hakkinen H, et al.
J Phys Chem Lett
. 2015 Aug;
5(2):387-92.
PMID: 26270716
We have determined vibrational signatures and optical gap of the Au144(PET)60 (PET: phenylethylthiol, SC2H4Ph) nanocluster solvated in deuterated dichloromethane (DCM-D2, CD2Cl2) and in a single crystal. For crystals, solid-state (13)C...
9.
Mustalahti S, Myllyperkio P, Malola S, Lahtinen T, Salorinne K, Koivisto J, et al.
ACS Nano
. 2015 Feb;
9(3):2328-35.
PMID: 25703546
Photophysical properties of a water-soluble cluster Au102(pMBA)44 (pMBA = para-mercaptobenzoic acid) are studied by ultrafast time-resolved mid-IR spectroscopy and density functional theory calculations in order to distinguish between molecular and...
10.
Salorinne K, Lahtinen T, Malola S, Koivisto J, Hakkinen H
Nanoscale
. 2014 Jun;
6(14):7823-6.
PMID: 24910110
The hydrodynamic diameter of Aum(pMBA)n [(m, n) = (102, 44) and (144, 60)] clusters in aqueous media was determined via DOSY NMR spectroscopy. The apparent size of the same (n,...