Literature DB >> 31983869

Thermal Stability and Explosive Hazard Assessment of Diazo Compounds and Diazo Transfer Reagents.

Sebastian P Green1,2, Katherine M Wheelhouse3, Andrew D Payne3, Jason P Hallett2, Philip W Miller1, James A Bull1.   

Abstract

Despite their wide use in academia as metal-carbene precursors, diazo compounds are often avoided in industry owing to concerns over their instability, exothermic decomposition, and potential explosive behavior. The stability of sulfonyl azides and other diazo transfer reagents is relatively well understood, but there is little reliable data available for diazo compounds. This work first collates available sensitivity and thermal analysis data for diazo transfer reagents and diazo compounds to act as an accessible reference resource. Thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), and accelerating rate calorimetry (ARC) data for the model donor/acceptor diazo compound ethyl (phenyl)diazoacetate are presented. We also present a rigorous DSC dataset with 43 other diazo compounds, enabling direct comparison to other energetic materials to provide a clear reference work to the academic and industrial chemistry communities. Interestingly, there is a wide range of onset temperatures (T onset) for this series of compounds, which varied between 75 and 160 °C. The thermal stability variation depends on the electronic effect of substituents and the amount of charge delocalization. A statistical model is demonstrated to predict the thermal stability of differently substituted phenyl diazoacetates. A maximum recommended process temperature (T D24) to avoid decomposition is estimated for selected diazo compounds. The average enthalpy of decomposition (ΔH D) for diazo compounds without other energetic functional groups is -102 kJ mol-1. Several diazo transfer reagents are analyzed using the same DSC protocol and found to have higher thermal stability, which is in general agreement with the reported values. For sulfonyl azide reagents, an average ΔH D of -201 kJ mol-1 is observed. High-quality thermal data from ARC experiments shows the initiation of decomposition for ethyl (phenyl)diazoacetate to be 60 °C, compared to that of 100 °C for the common diazo transfer reagent p-acetamidobenzenesulfonyl azide (p-ABSA). The Yoshida correlation is applied to DSC data for each diazo compound to provide an indication of both their impact sensitivity (IS) and explosivity. As a neat substance, none of the diazo compounds tested are predicted to be explosive, but many (particularly donor/acceptor diazo compounds) are predicted to be impact-sensitive. It is therefore recommended that manipulation, agitation, and other processing of neat diazo compounds are conducted with due care to avoid impacts, particularly in large quantities. The full dataset is presented to inform chemists of the nature and magnitude of hazards when using diazo compounds and diazo transfer reagents. Given the demonstrated potential for rapid heat generation and gas evolution, adequate temperature control and cautious addition of reagents that begin a reaction are strongly recommended when conducting reactions with diazo compounds.
Copyright © 2019 American Chemical Society.

Entities:  

Year:  2019        PMID: 31983869      PMCID: PMC6972035          DOI: 10.1021/acs.oprd.9b00422

Source DB:  PubMed          Journal:  Org Process Res Dev        ISSN: 1083-6160            Impact factor:   3.317


  10 in total

1.  Carbene reactivity from alkyl and aryl aldehydes.

Authors:  Bethany M DeMuynck; Alyson N Paneque; Joy E Rutherford; Lumin Zhang; David A Nagib
Journal:  Science       Date:  2022-08-04       Impact factor: 63.714

2.  The Versatile Reaction Chemistry of an Alpha-Boryl Diazo Compound.

Authors:  Yao Liu; Raimon Puig de la Bellacasa; Bo Li; Ana Belén Cuenca; Shih-Yuan Liu
Journal:  J Am Chem Soc       Date:  2021-08-25       Impact factor: 16.383

3.  Biocatalytic Carbene Transfer Using Diazirines.

Authors:  Nicholas J Porter; Emma Danelius; Tamir Gonen; Frances H Arnold
Journal:  J Am Chem Soc       Date:  2022-05-13       Impact factor: 16.383

4.  Protected N-Acetyl Muramic Acid Probes Improve Bacterial Peptidoglycan Incorporation via Metabolic Labeling.

Authors:  Ashley R Brown; Kimberly A Wodzanowski; Cintia C Santiago; Stephen N Hyland; Julianna L Follmar; PapaNii Asare-Okai; Catherine Leimkuhler Grimes
Journal:  ACS Chem Biol       Date:  2021-09-10       Impact factor: 4.634

5.  Late-Stage Amination of Drug-Like Benzoic Acids: Access to Anilines and Drug Conjugates through Directed Iridium-Catalyzed C-H Activation.

Authors:  Erik Weis; Magnus J Johansson; Belén Martín-Matute
Journal:  Chemistry       Date:  2021-11-17       Impact factor: 5.020

6.  Functionalisation of ethereal-based saturated heterocycles with concomitant aerobic C-H activation and C-C bond formation.

Authors:  Nehaal Ahmed; Richard J Spears; Tom D Sheppard; Vijay Chudasama
Journal:  Chem Sci       Date:  2022-06-27       Impact factor: 9.969

7.  Continuous Flow Generation of Acylketene Intermediates via Nitrogen Extrusion.

Authors:  Harry R Smallman; Guilherme A Brancaglion; Julio C Pastre; Duncan L Browne
Journal:  J Org Chem       Date:  2022-09-01       Impact factor: 4.198

8.  Direct and selective access to amino-poly(phenylene vinylenes)s with switchable properties by dimerizing polymerization of aminoaryl carbenes.

Authors:  Quentin Sobczak; Aravindu Kunche; Damien Magis; Daiann Sosa Carrizo; Karinne Miqueu; Jean-Marc Sotiropoulos; Eric Cloutet; Cyril Brochon; Yannick Landais; Daniel Taton; Joan Vignolle
Journal:  Nat Commun       Date:  2021-07-02       Impact factor: 14.919

Review 9.  Generation of Tosyl Azide in Continuous Flow Using an Azide Resin, and Telescoping with Diazo Transfer and Rhodium Acetate-Catalyzed O-H Insertion.

Authors:  Rosella M O'Mahony; Denis Lynch; Katie S O'Callaghan; Stuart G Collins; Anita R Maguire
Journal:  Org Process Res Dev       Date:  2021-11-30       Impact factor: 3.317

10.  Understanding the Influence of Donor-Acceptor Diazo Compounds on the Catalyst Efficiency of B(C6 F5 )3 Towards Carbene Formation.

Authors:  Rasool Babaahmadi; Ayan Dasgupta; Christopher J T Hyland; Brian F Yates; Rebecca L Melen; Alireza Ariafard
Journal:  Chemistry       Date:  2022-01-27       Impact factor: 5.020

  10 in total

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