Seite - 136 - in Charge Transport in DNA - Insights from Simulations
Bild der Seite - 136 -
Text der Seite - 136 -
BIBLIOGRAPHY
[124] T. Kubarˇ andM. Elstner. What Governs the Charge Transfer inDNA? The
RoleofDNAConformationandEnvironment. J.Phys.Chem.B,2008. 112,29,
8788–8798.
[125] A. A. Voityuk, K. Siriwong, andN. Rösch. Environmental Fluctuations Fa-
cilitate Electron-Hole Transfer fromGuanine toAdenine inDNA π Stacks.
Angew.Chem. Int.Ed.,2004. 43,5,624–627.
[126] X.-J. Lu,M.E.Hassan, andC.Hunter. Structure andconformationofhelical
nucleic acids: analysis program (SCHNAaP). J.Mol. Biol., 1997. 273, 3, 668–
680.
[127] M.Büttiker. AbsenceofBackscattering in theQuantumHall-Effect inMulti-
probeConductors. Phys.Rev.B,1988. 38,14,9375–9389.
[128] B. Popescu, P. B. Woiczikowski, M. Elstner, and U. Kleinekathöfer. Time-
dependentviewof sequential transport throughmoleculeswith rapidlyfluc-
tuatingbridges. Phys.Rev. Lett.,2012. 109,17,176802.
[129] P. J. Acklam. An algorithm for computing the in verse normal cumu
lative distribution function, 2010.
Http://home.online.no/~pjacklam/notes/invnorm/.
136 -
Charge Transport in DNA
Insights from Simulations
- Titel
- Charge Transport in DNA
- Untertitel
- Insights from Simulations
- Autor
- Mario Wolter
- Verlag
- KIT Scientific Publishing
- Datum
- 2013
- Sprache
- englisch
- Lizenz
- CC BY-SA 3.0
- ISBN
- 978-3-7315-0082-7
- Abmessungen
- 17.0 x 24.0 cm
- Seiten
- 156
- Schlagwörter
- Charge Transport, Charge Transfer, DNA, Molecular Dynamics, Quantum Mechanics
- Kategorien
- Naturwissenschaften Chemie
Inhaltsverzeichnis
- Zusammenfassung 1
- Summary 3
- 1 Introduction 5
- 2 TheoreticalBackground 11
- 3 SimulationSetup 39
- 4 DNAUnderExperimentalConditions 49
- 5 ChargeTransport inStretchedDNA 69
- 6 ChargeTransport inMicrohydratedDNA 79
- 7 AParametrizedModel toSimulateCT inDNA 89
- 8 Conclusion 105
- Appendix 111
- A DNAUnderExperimentalConditions 111
- B CTinMicrohydratedDNA 117
- List ofPublications 137