associated with the research themes of the SENSE laboratory:
2025
Marine biogenic humic substances control iron biogeochemistry across the Southern Ocean
Nature communications. 2025. Vol. 16, num. 1. DOI : 10.1038/s41467-025-57491-5.Scalable room temperature incorporation of CO2 -selective ångström-scale pores in graphene for carbon capture
2025
Marine biogenic humic substances control iron biogeochemistry across the Southern Ocean (vol 16, 2662, 2025)
NATURE COMMUNICATIONS. 2025. Vol. 16, num. 1. DOI : 10.1038/s41467-025-58564-1.Gated CO2 permeation across dynamic graphene pores
2025
Scalable synthesis of CO2-selective porous single-layer graphene membranes
2025
Water mass specific genes dominate the Southern Ocean microbiome
2025
2024
Distinct responses of diatom- and flagellate-dominated Antarctic phytoplankton communities to altered iron and light supply
FRONTIERS IN MARINE SCIENCE. 2024. DOI : 10.3389/fmars.2024.1441087.2023
Environmental drivers of eukaryotic plankton and fish biodiversity in an Arctic fjord
Polar Biology. 2023. DOI : 10.1007/s00300-023-03187-9.A 2000-year temperature reconstruction on the East Antarctic plateau from argon-nitrogen and water stable isotopes in the Aurora Basin North ice core
Climate Of The Past. 2023. Vol. 19, num. 6, p. 1125 – 1152. DOI : 10.5194/cp-19-1125-2023.Chasing iron bioavailability in the Southern Ocean: Insights from Phaeocystis antarctica and iron speciation
Science Advances. 2023. Vol. 9, num. 26, p. eadf9696. DOI : 10.1126/sciadv.adf9696.Genomic insights into the coupling of a Chlorella-like microeukaryote and sulfur bacteria in the chemocline of permanently stratified Lake Cadagno
Isme Journal. 2023. DOI : 10.1038/s41396-023-01396-y.Synthesis Report on the Environmental Impacts of Polar Research and Logistics in the Polar Regions
2023