Azobenzene is by far the most studied photochromic molecule and its applications range from optical storage to bio-engineering. To exploit the great potential of azobenzene, one must achieve deep understanding of its photochemistry as single molecule in solution AS WELL AS in-chain moiety and pendent group in macromolecular structures. With the advent of computer-aided simulation scientists have been able to match experimental data with computational models. In this chapter, a review on the modeling of azobenzene-containing molecules in different conditions and environments IS provided with a special focus on advanced applications of photo-controllable materials, such as molecular machines and photoactivation of bio-molecules.
Modeling of azobenzene-based compounds / Marturano, V.; Ambrogi, V.; Bandeira, N. A. G.; Tylkowski, B.; Giamberini, M.; Cerruti, P.. - In: PHYSICAL SCIENCES REVIEWS. - ISSN 2365-659X. - 2:11(2019), pp. 1-12. [10.1515/psr-2017-0138]
Modeling of azobenzene-based compounds
Marturano V.;Ambrogi V.;
2019
Abstract
Azobenzene is by far the most studied photochromic molecule and its applications range from optical storage to bio-engineering. To exploit the great potential of azobenzene, one must achieve deep understanding of its photochemistry as single molecule in solution AS WELL AS in-chain moiety and pendent group in macromolecular structures. With the advent of computer-aided simulation scientists have been able to match experimental data with computational models. In this chapter, a review on the modeling of azobenzene-containing molecules in different conditions and environments IS provided with a special focus on advanced applications of photo-controllable materials, such as molecular machines and photoactivation of bio-molecules.File | Dimensione | Formato | |
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[Physical Sciences Reviews] Modeling of Azobenzene-Based Compounds.pdf
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