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Interactions between thiol molecular linkers and the Au
13
nanoparticle
J. A. Larsson, M. Nolan,
J. C. Greer
Research output
:
Journal Publication
›
Article
›
peer-review
80
Citations (Scopus)
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13
nanoparticle'. Together they form a unique fingerprint.
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Physics & Astronomy
thiols
100%
gold
61%
nanoparticles
53%
interactions
31%
electronic structure
19%
transport properties
13%
wire
13%
atomic clusters
11%
electromigration
10%
bears
9%
electronics
9%
assemblies
9%
electrons
7%
density functional theory
6%
microscopy
6%
scanning
5%
probes
5%
predictions
4%
molecules
4%
metals
4%
Engineering & Materials Science
Gold
85%
Nanoparticles
78%
Electronic structure
44%
Electron transport properties
19%
Metal nanoparticles
16%
Scanning probe microscopy
15%
Electron Transport
15%
Gold nanoparticles
15%
Self assembled monolayers
15%
Electronic properties
15%
Wire
14%
Density functional theory
14%
Electromigration
12%
Molecules
9%
Chemical Compounds
Thiol
67%
Molecular Cluster
44%
Nanoparticle
39%
Electronic State
24%
Electron Transport
21%
Transport Property
21%
Surface
18%
Cluster Structure
15%
Scanning Probe Microscopy
13%
Thiol Group
12%
Metal Nanoparticle
11%
Self Assembled Monolayer
10%
Gold Nanoparticle
9%
Electronic Property
9%
Density Functional Theory
7%
Modification
6%
Molecule
3%