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Katrianne Lehtipalo

Finnish Meteorological Institute ·
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Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research interests include Atmospheric chemistry and aerosols, Atmospheric aerosols and clouds, Atmospheric Ozone and Climate, and Air Quality and Health Impacts.
h-index
65
citations
20,236
works
402
NIH funding
primary concept
email

Recent publications

Anthropogenic organic aerosol in Europe produced mainly through second-generation oxidation
Nature Geoscience 2025cited by 13position: middledoi
Iodine oxoacids enhance nucleation of sulfuric acid particles in the atmosphere
Science 2023cited by 66position: middledoi
Molecular Understanding of the Enhancement in Organic Aerosol Mass at High Relative Humidity
Environmental Science & Technology 2023cited by 52position: middledoi
NO at low concentration can enhance the formation of highly oxygenated biogenic molecules in the atmosphere
Nature Communications 2023cited by 42position: middledoi
Impact of 2020 COVID-19 lockdowns on particulate air pollution across Europe
Atmospheric chemistry and physics 2023cited by 21position: middledoi
Tropical and Boreal Forest – Atmosphere Interactions: A Review
Tellus B 2022cited by 131position: middledoi
Synergistic HNO3–H2SO4–NH3 upper tropospheric particle formation
Nature 2022cited by 92position: middledoi
High Gas-Phase Methanesulfonic Acid Production in the OH-Initiated Oxidation of Dimethyl Sulfide at Low Temperatures
Environmental Science & Technology 2022cited by 72position: middledoi
The gas-phase formation mechanism of iodic acid as an atmospheric aerosol source
Nature Chemistry 2022cited by 66position: middledoi
Role of iodine oxoacids in atmospheric aerosol nucleation
Science 2021cited by 264position: middledoi
The Synergistic Role of Sulfuric Acid, Bases, and Oxidized Organics Governing New‐Particle Formation in Beijing
Geophysical Research Letters 2021cited by 173position: middledoi
The driving factors of new particle formation and growth in the polluted boundary layer
Atmospheric chemistry and physics 2021cited by 93position: middledoi
Rapid growth of new atmospheric particles by nitric acid and ammonia condensation
Nature 2020cited by 354position: middledoi
Molecular understanding of new-particle formation from <i>α</i> -pinene between −50 and +25 °C
Atmospheric chemistry and physics 2020cited by 160position: middledoi
Photo-oxidation of Aromatic Hydrocarbons Produces Low-Volatility Organic Compounds
Environmental Science & Technology 2020cited by 153position: middledoi
Enhanced growth rate of atmospheric particles from sulfuric acid
Atmospheric chemistry and physics 2020cited by 144position: middledoi
Size-dependent influence of NO <sub>x</sub> on the growth rates of organic aerosol particles
Science Advances 2020cited by 135position: middledoi
Molecular understanding of the suppression of new-particle formation by isoprene
Atmospheric chemistry and physics 2020cited by 130position: middledoi
New Particle Formation in the Atmosphere: From Molecular Clusters to Global Climate
Journal of Geophysical Research Atmospheres 2019cited by 429position: middledoi
Overview of the Antarctic Circumnavigation Expedition: Study of Preindustrial-like Aerosols and Their Climate Effects (ACE-SPACE)
Bulletin of the American Meteorological Society 2019cited by 178position: middledoi
Formation of Highly Oxygenated Organic Molecules from α-Pinene Ozonolysis: Chemical Characteristics, Mechanism, and Kinetic Model Development
ACS Earth and Space Chemistry 2019cited by 122position: middledoi
Molecular Composition and Volatility of Nucleated Particles from α-Pinene Oxidation between −50 °C and +25 °C
Environmental Science & Technology 2019cited by 92position: middledoi
Multicomponent new particle formation from sulfuric acid, ammonia, and biogenic vapors
Science Advances 2018cited by 367position: firstdoi
Rapid growth of organic aerosol nanoparticles over a wide tropospheric temperature range
Proceedings of the National Academy of Sciences 2018cited by 319position: middledoi
New particle formation in the sulfuric acid–dimethylamine–water system: reevaluation of CLOUD chamber measurements and comparison to an aerosol nucleation and growth model
Atmospheric chemistry and physics 2018cited by 178position: middledoi
Causes and importance of new particle formation in the present‐day and preindustrial atmospheres
Journal of Geophysical Research Atmospheres 2017cited by 519position: middledoi
Measurements of sub-3 nm particles using a particle size magnifier in different environments: from clean mountain top to polluted megacities
Atmospheric chemistry and physics 2017cited by 114position: middledoi
The role of low-volatility organic compounds in initial particle growth in the atmosphere
Nature 2016cited by 933position: middledoi
Ion-induced nucleation of pure biogenic particles
Nature 2016cited by 872position: middledoi
Global atmospheric particle formation from CERN CLOUD measurements
Science 2016cited by 570position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Jani Hakala · Karsa (Finland)2 papers (2017–2018)Markku Kulmala · University of Helsinki2 papers (2017–2018)Shan‐Hu Lee · Fudan University2 papers (2017–2019) · 1 papers (2018–2018)Hanna E. Manninen · Finnish Food Authority1 papers (2017–2017)Juha Kangasluoma · University of Helsinki1 papers (2017–2017) · 1 papers (2017–2017)Joachim Curtius · Goethe University Frankfurt1 papers (2018–2018) · 1 papers (2018–2018)Jenni Kontkanen · University of Helsinki1 papers (2017–2017)Neil M. Donahue · Carnegie Mellon University1 papers (2018–2018)Tuija Jokinen · University of Helsinki1 papers (2018–2018) · 1 papers (2018–2018)Mikko Sipilä · University of Helsinki1 papers (2018–2018) · 1 papers (2018–2018) · 1 papers (2017–2017)Andreas Kürten · Goethe University Frankfurt1 papers (2018–2018)Renyi Zhang · Fudan University1 papers (2019–2019) · 1 papers (2017–2017)Wei Nie · Shandong University1 papers (2017–2017)
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