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Pointner, Ferdinand L. ; Poll, Jonas ; Taskinen, Elina K. ; George, Vincent ; Ruff, Tristan ; Rott, Florian ; Mayer, Gabriel ; Gessner, Niklas ; Kutta, Roger Jan ; König, Burkhard ; Nuernberger, Patrick ; Ochsenfeld, Christian ; de Vivie-Riedle, Regina

Mechanistic Study of the Light-Initiated Generation of Free Diazoalkanes: Towards Photo-Orthogonal Synthesis

Pointner, Ferdinand L. , Poll, Jonas , Taskinen, Elina K. , George, Vincent , Ruff, Tristan, Rott, Florian , Mayer, Gabriel , Gessner, Niklas , Kutta, Roger Jan , König, Burkhard , Nuernberger, Patrick , Ochsenfeld, Christian and de Vivie-Riedle, Regina (2025) Mechanistic Study of the Light-Initiated Generation of Free Diazoalkanes: Towards Photo-Orthogonal Synthesis. ChemistryEurope 3 (5), e202500133.

Date of publication of this fulltext: 10 Oct 2025 04:34
Article
DOI to cite this document: 10.5283/epub.77949


Abstract

An in-depth mechanistic study for the photogeneration of free diazoalkanes from N-tosylhydrazone precursors by combining observations from synthesis with spectroscopic and theoretical methods is presented. The N-tosylhydrazones have been previously established as donors for alkyl diazo species upon light irradiation, but exact mechanistic details of this photodissociation have remained elusive. ...

An in-depth mechanistic study for the photogeneration of free diazoalkanes from N-tosylhydrazone precursors by combining observations from synthesis with spectroscopic and theoretical methods is presented. The N-tosylhydrazones have been previously established as donors for alkyl diazo species upon light irradiation, but exact mechanistic details of this photodissociation have remained elusive. Investigations of cyclohexane tosylhydrazone (CyNNTsH) by time-resolved FTIR spectroscopy proved the role of the deprotonated CyNNTs− as the light-harvesting species and revealed an intricate dependency of the thermal lifetime of the resulting diazoalkane on the deprotonating base. Computational studies including multiple approaches and levels of theory as well as rigorous benchmarking elucidated the dissociation mechanism via an allowed charge transfer state, a resulting destabilization of the dissociating bond, and a fast change of electronic character of the S1. These insights allow to suggest specific reaction conditions for photolabile or previously incompatible reaction partners thus paving way towards photo-orthogonal synthetic strategies.



Involved Institutions


Details

Item typeArticle
Journal or Publication TitleChemistryEurope
Publisher:Wiley
Volume:3
Number of Issue or Book Chapter:5
Page Range:e202500133
Date2 August 2025
InstitutionsChemistry and Pharmacy > Institut für Organische Chemie > Lehrstuhl Prof. Dr. Burkhard König
Chemistry and Pharmacy > Institut für Physikalische und Theoretische Chemie > Chair of Physical Chemistry I > Prof. Dr. Patrick Nürnberger
Projects
Funded by: Deutsche Forschungsgemeinschaft (DFG) (444632635)
Funded by: Deutsche Forschungsgemeinschaft (DFG) (426795949)
Identification Number
ValueType
10.1002/ceur.202500133DOI
Keywordsdiazo compounds · photochemistry · reaction mechanisms
Dewey Decimal Classification500 Science > 540 Chemistry & allied sciences
StatusPublished
RefereedYes, this version has been refereed
Created at the University of RegensburgPartially
URN of the UB Regensburgurn:nbn:de:bvb:355-epub-779496
Item ID77949

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