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The Photochemistry of Pyrene - a social fluorescent spy - René M. Williams, UvA

Автор: René M. Williams

Загружено: 2020-04-01

Просмотров: 3509

Описание: This is a lecture at the MSc level for chemistry students that are interested in molecular photochemistry. From excimer to the Ham effect to exciplexes.
Learning objectives:

A molecule in its excited state is like a new species, a new entity, with special (sometimes unexpected) properties that are not present in its ground state.

Photochemistry has a direct link with quantum chemistry.

Transitions that are (symmetry) forbidden can still be observed because molecular vibrations will slightly break the forbidden character.

Intermolecular (or interchromophoric) interactions in the excited state can lead to electronic interactions enabling transfer processes.

Luminescent molecules can be used as probes, that report information about their environment. Like molecular spies (007).


NOTE: it not azulene, but it is tetrazine that should be displayed (at 12:37).


Special Thanks to Murthy (Vaidhyanathan Ramamurthy) for sharing all his slides!!





 I have published seven papers featuring pyrene, including a JACS (2005) paper.
(See my Google Scholar list, do "Find", pyre).


Background literature on pyrene and its excimer:
Nanosecond Time-Resolved Fluorescence Spectroscopy in the Physical Chemistry Laboratory: Formation of the Pyrene Excimer in Solution
https://pubs.acs.org/doi/abs/10.1021/...

N. J. Turro , V. Ramamurthy and J. C. Scaiano , Principles of Molecular Photochemistry: An Introduction , University Science Books, 2009
https://www.uscibooks.com/turro2.htm

Review on "Pyrene-Based Materials for Organic Electronics", with loads of references,
(also on some photochemistry):
https://doi.org/10.1021/cr100428a


More information on Pyrene as an emissive polarity probe:
https://doi.org/10.1021/j100012a014


NEW ADDITION, recent papers on Pyrene:
Forbidden transition of pyrene and the nature of the excimer:


"Experimental and Theoretical Studies of the Photophysical Properties of 2- and 2,7-Functionalized Pyrene Derivatives"

https://doi.org/10.1021/ja2006862


"Pyrene Molecular Orbital Shuffle—Controlling Excited State and Redox Properties by Changing the Nature of the Frontier Orbitals"

https://doi.org/10.1002/chem.201702594


The Nature of Excimer Formation in Crystalline Pyrene Nanoparticles
https://doi.org/10.1021/acs.jpcc.8b03963

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