International audienceHigh mass resolution multicollector inductively coupled plasma mass spectrometry (MC-ICP-MS) was assessed for iron isotope measurement of natural samples after matrix separation by anion exchange chromatography. No remaining interferences were observed on the plateaus used for the mass spectrometric measurements. The approach developed and the instrument used permitted analyses in the static mode. Various mass bias corrections using Ni doping were tested, and even the assumption of similar fractionation factors for Fe and Ni did not produce significantly inaccurate data. However, the daily regression method between In Fe-57/(54) Fe and 1n(61)Ni/Ni-60 on the standard reference material IRMM-14 to characterize the instru...
Abstract also presented in French.Isotope ratios of heavy elements vary on the 1/10000 level in high...
Small, but significant fractionation of Fe isotopes occurs in high-temperature igneous rocks. Despit...
Small , but significant fractionation of Fe isotopes occurs in high-temperature igneous rocks. Desp...
International audienceAssessing the level of homogeneity of different planetary reservoirs is an ess...
To evaluate the interlaboratory mass bias for high-precision stable Mg isotopic analysis of natural ...
The causes of some stable isotopic variations in felsic rocks are not well understood. In particular...
An analytical protocol for the accurate and precise determination of the gallium isotope ratio in ge...
Near quantitative separation of analyte elements from the sample matrix is commonly required to obta...
Isotopic reference materials (IRMs) are crucial for securing accurate and precise isotope ratio meas...
Improved methods are presented for the separation of platinum from iron meteorites and subsequent an...
International audienceAlthough less variable in abundances than carbon or oxygen stable isotopes, ir...
International audienceMulti-collector inductively coupled plasma mass spectrometers (MC-ICPMS) are w...
Although the processes that govern iron isotope variations in nature are just beginning to be unders...
Reliable isotopic analysis of Fe by means of inductively coupled plasma mass spectrometry (ICP-MS) i...
Rationale: High-precision magnesium (Mg) isotopic analysis for geological and environmental referenc...
Abstract also presented in French.Isotope ratios of heavy elements vary on the 1/10000 level in high...
Small, but significant fractionation of Fe isotopes occurs in high-temperature igneous rocks. Despit...
Small , but significant fractionation of Fe isotopes occurs in high-temperature igneous rocks. Desp...
International audienceAssessing the level of homogeneity of different planetary reservoirs is an ess...
To evaluate the interlaboratory mass bias for high-precision stable Mg isotopic analysis of natural ...
The causes of some stable isotopic variations in felsic rocks are not well understood. In particular...
An analytical protocol for the accurate and precise determination of the gallium isotope ratio in ge...
Near quantitative separation of analyte elements from the sample matrix is commonly required to obta...
Isotopic reference materials (IRMs) are crucial for securing accurate and precise isotope ratio meas...
Improved methods are presented for the separation of platinum from iron meteorites and subsequent an...
International audienceAlthough less variable in abundances than carbon or oxygen stable isotopes, ir...
International audienceMulti-collector inductively coupled plasma mass spectrometers (MC-ICPMS) are w...
Although the processes that govern iron isotope variations in nature are just beginning to be unders...
Reliable isotopic analysis of Fe by means of inductively coupled plasma mass spectrometry (ICP-MS) i...
Rationale: High-precision magnesium (Mg) isotopic analysis for geological and environmental referenc...
Abstract also presented in French.Isotope ratios of heavy elements vary on the 1/10000 level in high...
Small, but significant fractionation of Fe isotopes occurs in high-temperature igneous rocks. Despit...
Small , but significant fractionation of Fe isotopes occurs in high-temperature igneous rocks. Desp...