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Sample volume effects in optical overhauser dynamic nuclear polarization
Daniel Cheney, Chris Wedge
School of Applied Sciences
Centre for Functional Materials
Research output
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Contribution to journal
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Article
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peer-review
4
Citations (Scopus)
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Dive into the research topics of 'Sample volume effects in optical overhauser dynamic nuclear polarization'. Together they form a unique fingerprint.
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Chemistry
Dynamic Nuclear Polarization
100%
Volume
40%
Chemically Induced Dynamic Electron Polarization
38%
Optical Constant
33%
NMR Signal
26%
Triplet State
23%
Illumination
20%
Microwave
18%
Simulation
14%
Dye
14%
Length
13%
Physics & Astronomy
polarization
37%
nuclear magnetic resonance
27%
cross relaxation
22%
augmentation
21%
optical density
20%
atomic energy levels
18%
optical paths
18%
dyes
15%
pumping
14%
illumination
13%
microwaves
11%
sensitivity
10%
lasers
7%
electrons
7%
simulation
6%
Engineering & Materials Science
Polarization
63%
Nuclear magnetic resonance
41%
Density (optical)
26%
Dyes
19%
Electrons
17%
Relaxation
16%
Microwaves
15%
Numerical models
14%
Lighting
13%
Lasers
13%
Computer simulation
9%
Medicine & Life Sciences
Microwaves
27%
Lighting
25%
Coloring Agents
19%
Lasers
18%
Electrons
18%