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Early Earth
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Keyword
keyword
Early Earth
RIS
0.001
(Research Intensity Score)
Papers
130
Top papers
Solidification of Earth’s mantle led inevitably to a basal magma ocean
2025 · 36 citations
Mineral-Bound Trace Metals as Cofactors for Anaerobic Biological Nitrogen Fixation
2023 · 94 citations
Phosphorus availability on the early Earth and the impacts of life
2023 · 94 citations
A mineral-based origin of Earth’s initial hydrogen peroxide and molecular oxygen
2023 · 95 citations
Manganese oxides, Earth surface oxygenation, and the rise of oxygenic photosynthesis
2023 · 84 citations
Onset of coupled atmosphere–ocean oxygenation 2.3 billion years ago
2024 · 33 citations
Earth’s magnetic field and its relationship to the origin of life, evolution and planetary habitability
2025 · 18 citations
An abiotic source of Archean hydrogen peroxide and oxygen that pre-dates oxygenic photosynthesis
2021 · 105 citations
Isotopic constraints on lightning as a source of fixed nitrogen in Earth’s early biosphere
2023 · 45 citations
Newest papers
Contemporaneous mobile- and stagnant-lid tectonics on the Hadean Earth
2026 · 3 citations
Oxidized Hadean magmas and Archean mobile-lid tectonics revealed by Jack Hills zircon
2026 · 2 citations
Iron-Phosphorus Coupling and the Cambrian Threshold:A Three-Factor Co-Limitation Model for Complex Life
2026
Iron-Mediated Gold Retention During Core-Mantle Differentiation: A Hypothesis for the Terrestrial Mantle Gold Paradox
2026
Anoxic photo-oxidation of Mn(II)-bearing carbonates on Mars and early Earth
2026 · 1 citations
No Evidence for Impact Melt Sheets from the Early Earth Detrital Zircon Record
2026
The Primary Geologic evolutionin the light of the events in the Solar System (4,568–3,800 million years ago)
2026
The Silicate Continuum: A Continuous Physical-Chemical Sequence from Nebular Condensation through the Anoxic Iron-Silicate Eon to the Oxygenated Biosphere
2026
The Silicate Continuum: A Continuous Physical-Chemical Sequence from Nebular Condensation through the Anoxic Iron-Silicate Eon to the Oxygenated Biosphere
2026
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