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Dearomatization drives complexity generation in freshwater organic matter
Siyu Li
, Mourad Harir
, David Bastviken
,
Philippe Schmitt-Kopplin
, Michael Gonsior
, Alex Enrich-Prast
, Juliana Valle
, Norbert Hertkorn
Chair of Analytical Food Chemistry
Helmholtz Zentrum München German Research Center for Environmental Health
Technical University of Munich
Linköping University
Appalachian Laboratory
Psicobiol. Univ. Fed. de Sao Paolo
Research output
:
Contribution to journal
›
Article
›
peer-review
25
Scopus citations
Overview
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Keyphrases
Organic Matter
100%
Freshwater
100%
Dissolved Organic Matter
100%
Aromatization
100%
Oxidative Dearomatization
57%
Reaction Mechanism
28%
Structural Diversity
28%
Polyphenols
28%
Most Complex
14%
Carbon Atom
14%
Carbon Skeleton
14%
Cycloaddition
14%
Substructure
14%
Structural Features
14%
Biomolecules
14%
Synthetic Chemistry
14%
Non-planar
14%
13C nuclear Magnetic Resonance
14%
Complex Dynamics
14%
Tannins
14%
High Abundance
14%
Natural Products
14%
Reaction Types
14%
Chemical Reactivity
14%
Tautomerization
14%
Cyclohexadienones
14%
Nuclear Magnetic Resonance Spectra
14%
Organic Carbon
14%
Polyphenolics
14%
Quaternary Carbon
14%
Aliphatic Structure
14%
Amazon River
14%
Organic Matter Processing
14%
Boreal Lakes
14%
Precursor Molecules
14%
Lignin-derived
14%
Biochemistry, Genetics and Molecular Biology
Tautomerization
100%
Precursor
100%
Drive
100%
Tannin
100%
Cycloaddition
100%
Engineering
Reaction Analysis
100%
Early Stage
50%
Biomolecule
50%
Precursor Molecule
50%
Nuclear Magnetic Resonance
50%
Multiplicity
50%
Quaternary Carbon
50%
Immunology and Microbiology
Skeleton
100%
Cycloaddition
100%
Precursor
100%
Tautomerization
100%
Chemistry
Dissolved Organic Matter
100%
Polyphenol
28%
NMR Spectrum
14%
Carbon Atom
14%
Chemistry
14%
Chemical Reactivity
14%
Tautomerization
14%
Organic Carbon
14%
Tannin
14%
Cycloaddition
14%
Natural Product
14%
Earth and Planetary Sciences
Organic Matter
100%
Amazon
12%
Nuclear Magnetic Resonance
12%
Cycloaddition
12%
Organic Carbon
12%