| Low-δ18O (−8 ‰, VSMOW) Paleoproterozoic and discordant zircon: Lessons learned from using a combination of traditional bulk and in situ approaches | Chemical geology |  | | 2025 | 19 | 0 |
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| The early Triassic time scale: New constraints from the Nanpanjiang Basin in South China and a review of geochronological, biostratigraphical and carbon isotope data | Earth-science reviews |  | | 2025 | 26 | 0 |
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| Interlaboratory reproducibility of ID-TIMS U–Pb geochronology evaluated with a pre-spiked natural zircon solution | Geochronology |  | | 2025 | 22 | 135 |
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| Screening Apatite for Potential Use as a U-Pb Geochronometer in Zircon-Poor Magmatic Rocks: Age of Late-Stage Alkaline Magmatism in the Bolnisi District, Georgia | The Canadian journal of mineralogy and petrology |  | | 2024 | 88 | 0 |
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| Recommendations for the reporting and interpretation of isotope dilution U-Pb geochronological information | Geological Society of America bulletin |  | | 2024 | 115 | 83 |
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| Excess 40Ar in Alkali Feldspar and 206,207Pb in Apatite Caused by Fluid-Induced Recrystallisation in a Semi-Closed Environment in Proterozoic (Meta)Granites of the Mt Isa Inlier, NE Australia | Geosciences |  | | 2024 | 19 | 135 |
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| Middle Neoproterozoic (Tonian) Polar Wander of South China: Paleomagnetism and ID‐TIMS U‐Pb Geochronology of the Laoshanya Formation | Journal of geophysical research. Solid earth |  | | 2024 | 83 | 40 |
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| Refining Boron Isotopic Measurements of Silicate Samples by Multi‐Collector‐Inductively Coupled Plasma‐Mass Spectrometry (MC‐ICP‐MS) | Geostandards and geoanalytical research |  | | 2023 | 66 | 473 |
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| U-Pb ID-TIMS reference ages and initial Pb isotope compositions for Durango and Wilberforce apatites | Chemical geology |  | | 2021 | 196 | 348 |
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| Constraints on the ages of the crystalline basement and Palaeozoic cover exposed in the Cordillera real, Ecuador: 40Ar/39Ar analyses and detrital zircon U/Pb geochronology | Gondwana Research |  | | 2021 | 581 | 577 |
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| High temperature (>350 °C) thermal histories of the long lived (>500 Ma) active margin of Ecuador and Colombia: Apatite, titanite and rutile U-Pb thermochronology | Geochimica et Cosmochimica Acta |  | | 2018 | 521 | 6 |
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| Advancing U-Pb high-temperature thermochronology by combining single grain and intra-grain dating | |  | | 2017 | 893 | 262 |
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