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  • © 2008

Radiation Induced Molecular Phenomena in Nucleic Acids

A Comprehensive Theoretical and Experimental Analysis

  • Discusses the mechanism of the ultrafast nonradiative decay processes in Nucleic Acid Bases
  • Investigates the design of photostable atoms and molecules
  • Utilizes theory and experimental techniques to examine photophysical behaviour in nucleic acids
  • Describes the computational methods used to study excited state properties of Nucleic Acid Bases and DNA

Part of the book series: Challenges and Advances in Computational Chemistry and Physics (COCH, volume 5)

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Table of contents (21 chapters)

  1. Front Matter

    Pages I-XII
  2. Single-Reference Methods for Excited States in Molecules and Polymers

    • So Hirata, Peng-Dong Fan, Toru Shiozaki, Yasuteru Shigeta
    Pages 15-64
  3. Nonadiabatic Excited-State Dynamics of Aromatic Heterocycles: Toward the Time-Resolved Simulation of Nucleobases

    • Mario Barbatti, Bernhard Sellner, Adélia J. A. Aquino, Hans Lischka
    Pages 209-235
  4. Excited-State Structural Dynamics of Nucleic Acids and Their Components

    • Glen R. Loppnow, Brant E. Billinghurst, Sulayman A. Oladepo
    Pages 237-263
  5. Ultrafast Radiationless Decay in Nucleic Acids: Insights From Nonadiabatic Ab Initio Molecular Dynamics

    • Nikos L. Doltsinis, Phineus R. L. Markwick, Harald Nieber, Holger Langer
    Pages 265-299
  6. Decay Pathways of Pyrimidine Bases: From Gas Phase to Solution

    • Wei Kong, Yonggang He, Chengyin Wu
    Pages 301-321
  7. Isolated Guanine: Tautomerism, Spectroscopy And Excited State Dynamics

    • Michel Mons, Iliana Dimicoli, François Piuzzi
    Pages 343-367
  8. Computational Study of UV-Induced Excitations of DNA Fragments

    • Manoj k. Shukla, Jerzy Leszczynski
    Pages 369-393
  9. Computational Modeling of Cytosine Photophysics and Photochemistry: From the Gas Phase to DNA

    • Luis Blancafort, Michael J. Bearpark, Michael A. Robb
    Pages 473-492
  10. Low Energy Electron Damage To DNA

    • Léon Sanche
    Pages 531-575

About this book

Comprehensive theoretical and experimental analysis of UV-radiation and low energy electron induced phenomena in nucleic acid bases (NABs) and base assemblies are presented in this book. NABs are highly photostable; the absorbed energy is dissipated in the form of ultrafast nonradiative decay.

This book highlights the possible mechanisms of these phenomena which is important for all living species and discusses technical challenges in exploration of these processes. This volume will be of particular interest for those involved in understanding the photophysical/photochemical properties of nucleic acids. All chapters are written by the world's leading experts, both from the experimental and computational areas.

Reviews

From the reviews:

"The editors … succeed in creating a balanced portrait of their interdependent efforts in the book’s 21 chapters. … the book contains a number of excellent individual reviews that will benefit workers interested in excited states in small DNA model systems and in the mechanisms by which low-energy electrons induce strand breaks. There are excellent references to the recent and older literature throughout the book that will be valued by established and new workers in the field." (Bern Kohler, Journal of the American Chemical Society, Vol. 131 (6), 2008)

Editors and Affiliations

  • Department of Chemistry, Jackson State University, Jackson, USA

    Manoj K. Shukla, Jerzy Leszczynski

Bibliographic Information

Buy it now

Buying options

eBook USD 259.00
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 329.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 329.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access