Structural stability versus conformational sampling in biomolecular systems: Why is the charge transfer efficiency in G4-DNA better than in double-stranded DNA?
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Title
Structural stability versus conformational sampling in biomolecular systems: Why is the charge transfer efficiency in G4-DNA better than in double-stranded DNA?
Authors
Keywords
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Journal
JOURNAL OF CHEMICAL PHYSICS
Volume 133, Issue 3, Pages 035103
Publisher
AIP Publishing
Online
2010-07-20
DOI
10.1063/1.3460132
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- Self-assembly of DNA into nanoscale three-dimensional shapes
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- Direct Simulation of Electron Transfer Reactions in DNA Radical Cations
- (2008) Thomas Steinbrecher et al. JOURNAL OF PHYSICAL CHEMISTRY B
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- Charge Transfer in Donor-Bridge-Acceptor Systems: Static Disorder, Dynamic Fluctuations, and Complex Kinetics
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- Effect of Structural Dynamics on Charge Transfer in DNA Hairpins
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- A multi-scale method for the calculation of charge transfer rates through the Π-stack of DNA: application to DNA dynamics
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- Persistence of Structure Over Fluctuations in Biological Electron-Transfer Reactions
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- Efficient procedure of preparation and properties of long uniform G4–DNA nanowires
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