Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Formation of highly oxidized multifunctional compounds: autoxidation of peroxy radicals formed in the ozonolysis of alkenes – deduced from structure–product relationships
by
Kurtén, T.
, Wahner, A.
, Pullinen, I.
, Ehn, M.
, Mentel, T. F.
, Rissanen, M.
, Springer, M.
, Wildt, J.
, Kleist, E.
in
Aldehydes
/ Alkenes
/ Atmospheric pressure
/ Atmospherics
/ Atomic properties
/ Autoxidation
/ Carbonyl compounds
/ Carbonyls
/ Chemistry
/ Dimerization
/ Experiments
/ Formations
/ Homology
/ Ionization
/ Isoprene
/ Mass spectra
/ Mass spectrometry
/ Monoterpenes
/ Organic compounds
/ Oxidants
/ Oxidation
/ Oxidizing agents
/ Oxygen
/ Ozonolysis
/ Particulate matter
/ Particulate organic matter
/ Peroxy radicals
/ Quantum mechanics
/ Radicals
/ Ring opening
/ Secondary aerosols
/ Suspended particulate matter
/ Terpenes
/ Tertiary
/ Vapors
/ VOCs
/ Volatile organic compounds
/ Volatility
2015
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Formation of highly oxidized multifunctional compounds: autoxidation of peroxy radicals formed in the ozonolysis of alkenes – deduced from structure–product relationships
by
Kurtén, T.
, Wahner, A.
, Pullinen, I.
, Ehn, M.
, Mentel, T. F.
, Rissanen, M.
, Springer, M.
, Wildt, J.
, Kleist, E.
in
Aldehydes
/ Alkenes
/ Atmospheric pressure
/ Atmospherics
/ Atomic properties
/ Autoxidation
/ Carbonyl compounds
/ Carbonyls
/ Chemistry
/ Dimerization
/ Experiments
/ Formations
/ Homology
/ Ionization
/ Isoprene
/ Mass spectra
/ Mass spectrometry
/ Monoterpenes
/ Organic compounds
/ Oxidants
/ Oxidation
/ Oxidizing agents
/ Oxygen
/ Ozonolysis
/ Particulate matter
/ Particulate organic matter
/ Peroxy radicals
/ Quantum mechanics
/ Radicals
/ Ring opening
/ Secondary aerosols
/ Suspended particulate matter
/ Terpenes
/ Tertiary
/ Vapors
/ VOCs
/ Volatile organic compounds
/ Volatility
2015
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Formation of highly oxidized multifunctional compounds: autoxidation of peroxy radicals formed in the ozonolysis of alkenes – deduced from structure–product relationships
by
Kurtén, T.
, Wahner, A.
, Pullinen, I.
, Ehn, M.
, Mentel, T. F.
, Rissanen, M.
, Springer, M.
, Wildt, J.
, Kleist, E.
in
Aldehydes
/ Alkenes
/ Atmospheric pressure
/ Atmospherics
/ Atomic properties
/ Autoxidation
/ Carbonyl compounds
/ Carbonyls
/ Chemistry
/ Dimerization
/ Experiments
/ Formations
/ Homology
/ Ionization
/ Isoprene
/ Mass spectra
/ Mass spectrometry
/ Monoterpenes
/ Organic compounds
/ Oxidants
/ Oxidation
/ Oxidizing agents
/ Oxygen
/ Ozonolysis
/ Particulate matter
/ Particulate organic matter
/ Peroxy radicals
/ Quantum mechanics
/ Radicals
/ Ring opening
/ Secondary aerosols
/ Suspended particulate matter
/ Terpenes
/ Tertiary
/ Vapors
/ VOCs
/ Volatile organic compounds
/ Volatility
2015
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Formation of highly oxidized multifunctional compounds: autoxidation of peroxy radicals formed in the ozonolysis of alkenes – deduced from structure–product relationships
Journal Article
Formation of highly oxidized multifunctional compounds: autoxidation of peroxy radicals formed in the ozonolysis of alkenes – deduced from structure–product relationships
2015
Request Book From Autostore
and Choose the Collection Method
Overview
It has been postulated that secondary organic particulate matter plays a pivotal role in the early growth of newly formed particles in forest areas. The recently detected class of extremely low volatile organic compounds (ELVOC) provides the missing organic vapors and possibly contributes a significant fraction to atmospheric SOA (secondary organic aerosol). The sequential rearrangement of peroxy radicals and subsequent O2 addition results in ELVOC which are highly oxidized multifunctional molecules (HOM). Key for efficiency of such HOM in early particle growth is that their formation is induced by one attack of the oxidant (here O3), followed by an autoxidation process involving molecular oxygen. Similar mechanisms were recently observed and predicted by quantum mechanical calculations e.g., for isoprene. To assess the atmospheric importance and therewith the potential generality, it is crucial to understand the formation pathway of HOM. To elucidate the formation path of HOM as well as necessary and sufficient structural prerequisites of their formation we studied homologous series of cycloalkenes in comparison to two monoterpenes. We were able to directly observe highly oxidized multifunctional peroxy radicals with 8 or 10 O atoms by an Atmospheric Pressure interface High Resolution Time of Flight Mass Spectrometer (APi-TOF-MS) equipped with a NO3−-chemical ionization (CI) source. In the case of O3 acting as an oxidant, the starting peroxy radical is formed on the so-called vinylhydroperoxide path. HOM peroxy radicals and their termination reactions with other peroxy radicals, including dimerization, allowed for analyzing the observed mass spectra and narrowing down the likely formation path. As consequence, we propose that HOM are multifunctional percarboxylic acids, with carbonyl, hydroperoxy, or hydroxy groups arising from the termination steps. We figured that aldehyde groups facilitate the initial rearrangement steps. In simple molecules like cycloalkenes, autoxidation was limited to both terminal C atoms and two further C atoms in the respective α positions. In more complex molecules containing tertiary H atoms or small, constrained rings, even higher oxidation degrees were possible, either by simple H shift of the tertiary H atom or by initialization of complex ring-opening reactions.
MBRLCatalogueRelatedBooks
Related Items
Related Items
We currently cannot retrieve any items related to this title. Kindly check back at a later time.
This website uses cookies to ensure you get the best experience on our website.