Molybdenum (Mo) is a redox-sensitive metal element. Its isotope composition (delta 98Mo) has the potential to reconstruct oceanic oxygenation extent in deep time. To accurately reconstruct the bulk delta 98Mo value of ancient seawater from sediment records, it is necessary to clarify the Mo isotope fractionation mechanism during the transformation among thiomolybdates (MoOxS4-x2-, x = 0-4) in marine environments. For aqueous systems, predicting the equilibrium isotope fractionation factors theoretically needs careful treatment of solvent effects. The commonly used water-droplet or periodical boundary condition methods are not only troublesome but also time-consuming. We test the efficiency of the two-layer own N-layer integrated molecular o...
New high-precision isotope ratios of dissolved Mo in seawater from different ocean basins and depths...
Within sulfidic waters, Mo speciation is characterized by the formation of thiomolybdates (MoOnS4-n2...
The molybdenum (Mo) isotope ratios (δ98/95Mo) of river waters control the δ98/95Mo values of seawate...
Molybdenum (Mo) is a redox-sensitive metal element. Its isotope composition (delta 98Mo) has the pot...
The molybdenum and uranium isotopic systems can poten-tially be used to reconstruct the oxidation st...
The present study investigates the pathways of Mo scavenging under reducing conditions using Mo isot...
We present the first observations of natural mass-dependent fractionation of the isotopic compositio...
Copyrighted by American Geophysical Union.Isotopic analyses of dissolved molybdenum are presented fo...
Copyrighted by American Geophysical Union.We present molybdenum isotope and concentration data from ...
A large mass-dependent isotope fractionation of molybdenum (Mo) during its adsorption on marine ferr...
Molybdenum (Mo)—the element with atomic number 42—possesses unique properties that make it the answe...
The expansion and contraction of sulphidic depositional conditions in the oceans can be tracked with...
The isotopic composition of Mo (δ97/95Mo) in seawater is ∼2‰ heavier than Mo in marine ferromanganes...
Mass spectrometric studies of the isotopic composition of molybdenum have become an active area of r...
This thesis investigates the influence of early diagenesis on trace metal and molybdenum isotope beh...
New high-precision isotope ratios of dissolved Mo in seawater from different ocean basins and depths...
Within sulfidic waters, Mo speciation is characterized by the formation of thiomolybdates (MoOnS4-n2...
The molybdenum (Mo) isotope ratios (δ98/95Mo) of river waters control the δ98/95Mo values of seawate...
Molybdenum (Mo) is a redox-sensitive metal element. Its isotope composition (delta 98Mo) has the pot...
The molybdenum and uranium isotopic systems can poten-tially be used to reconstruct the oxidation st...
The present study investigates the pathways of Mo scavenging under reducing conditions using Mo isot...
We present the first observations of natural mass-dependent fractionation of the isotopic compositio...
Copyrighted by American Geophysical Union.Isotopic analyses of dissolved molybdenum are presented fo...
Copyrighted by American Geophysical Union.We present molybdenum isotope and concentration data from ...
A large mass-dependent isotope fractionation of molybdenum (Mo) during its adsorption on marine ferr...
Molybdenum (Mo)—the element with atomic number 42—possesses unique properties that make it the answe...
The expansion and contraction of sulphidic depositional conditions in the oceans can be tracked with...
The isotopic composition of Mo (δ97/95Mo) in seawater is ∼2‰ heavier than Mo in marine ferromanganes...
Mass spectrometric studies of the isotopic composition of molybdenum have become an active area of r...
This thesis investigates the influence of early diagenesis on trace metal and molybdenum isotope beh...
New high-precision isotope ratios of dissolved Mo in seawater from different ocean basins and depths...
Within sulfidic waters, Mo speciation is characterized by the formation of thiomolybdates (MoOnS4-n2...
The molybdenum (Mo) isotope ratios (δ98/95Mo) of river waters control the δ98/95Mo values of seawate...