en

Neptune MC-ICPMS Hf Isotope Methods

This article provides the multi-collector inductively coupled plasma mass spectrometer (MC-ICPMS) methods employed at the University of Geneva using the Thermo Neptune Plus MC-ICPMS platform for Hf geochemistry of select accessory phase minerals, in particular baddeleyite and zircon.

    Organizational unit
    Isotope Geochemistry, Goechronology and Thermochronology
    Type
    Dataset
    DOI
    10.26037/yareta:cwporusbs5bv5nlgvdfyswzy2u
    Type
    general.label.dataset
    License
    Creative Commons Attribution 4.0 International
Publication date19/07/2021
Retention date17/07/2031
accessLevelPublicAccess levelPublic
SensitivityUndefined
duaNoneContract on the use of data
Contributors
  • Gaynor, Sean orcid
27
4
  • Quality (0 Reviews)
  • Usefulness (0 Reviews)

Datacite metadata

Packages information

Similar archives

Isotope Geochemistry, Goechronology and Thermochronology
Phoenix U-Pb ID-TIMS Geochronology Methods
2021 accessLevelPublic Public 404.0 KB
Isotope Geochemistry, Goechronology and Thermochronology
Ruiz et al., CL imagery of Aar batholith zircon
2022 accessLevelPublic Public 448.3 MB
Isotope Geochemistry, Goechronology and Thermochronology
Earthtime 100 Ma Standard Solution Measurements at the University of Geneva using the Phoenix TIMS: 2021a
2021 accessLevelPublic Public 311.6 KB
Isotope Geochemistry, Goechronology and Thermochronology
Earthtime 100 Ma Standard Solution Measurements at the University of Geneva using the Phoenix TIMS: 2022
2022 accessLevelPublic Public 237.6 KB
All rights reserved by DLCM and the University of GenevaunigeBlack