Dimitri Sverjensky
Geochemistry professor
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Earth Sciences Chemistry
Dimitri Sverjensky's Degrees
- Masters Geology University of California, Berkeley
- Bachelors Geology University of California, Berkeley
Why Is Dimitri Sverjensky Influential?
(Suggest an Edit or Addition)According to Wikipedia, Dimitri Alexander Sverjensky is a professor in Earth and Planetary Sciences at Johns Hopkins University where his research is focused on geochemistry. Career Dimitri Sverjensky received his B.Sc. from the University of Sydney, Australia in 1974. He went on to Yale University where he received his Masters and Ph.D in Geology in 1977 and 1980. After leaving Yale, Sverjensky worked as a staff scientist at the Lawrence Berkeley Laboratory, before becoming an assistant professor at SUNY Stony Brook. In 1984, he was appointed an assistant professor at Johns Hopkins University, and later promoted to associate professor. Since 1991 he has been a professor in the Department of Earth and Planetary Sciences at Johns Hopkins University. Throughout his academic career, he has served as associate editor for Economic Geology and Geochimica et Cosmochimica Acta. From 2005 to 2015, he was the senior visiting investigator at the Geophysical Laboratory at the Carnegie Institution of Washington.
Dimitri Sverjensky's Published Works
Published Works
- Inorganic species in geologic fluids: correlations among standard molal thermodynamic properties of aqueous ions and hydroxide complexes. (1997) (901)
- Metal Oxide Surfaces and Their Interactions with Aqueous Solutions and Microbial Organisms. (1999) (813)
- Europium redox equilibria in aqueous solution (1984) (678)
- Prediction of the thermodynamic properties of aqueous metal complexes to 1000°C and 5 kb (1997) (677)
- Calculation of the thermodynamic properties of aqueous species at high pressures and temperatures. Effective electrostatic radii, dissociation constants and standard partial molal properties to 1000 °C and 5 kbar (1992) (426)
- Theoretical prediction of single-site surface-protonation equilibrium constants for oxides and silicates in water (1996) (354)
- Calculation of the thermodynamic and transport properties of aqueous species at high pressures and temperatures : Standard partial molal properties of organic species (2002) (311)
- Partitioning of F-Cl-OH between minerals and hydrothermal fluids (1991) (289)
- Prediction of surface charge on oxides in salt solutions: Revisions for 1:1 (M+L−) electrolytes (2005) (260)
- Mineral surfaces, geochemical complexities, and the origins of life. (2010) (255)
- Genesis of stratabound ore deposits in the Midcontinent basins of North America; 1, The role of regional groundwater flow (1993) (231)
- Genesis of Mississippi Valley-type lead-zinc deposits (1986) (228)
- F-Cl-OH partitioning between biotite and apatite (1992) (225)
- Zero-point-of-charge prediction from crystal chemistry and solvation theory (1994) (217)
- Oil field brines as ore-forming solutions (1984) (209)
- Water in the deep Earth: The dielectric constant and the solubilities of quartz and corundum to 60 kb and 1200 °C (2014) (203)
- Evaluation of internally consistent parameters for the triple-layer model by the systematic analysis of oxide surface titration data (1997) (194)
- Thermodynamic assessment of hydrothermal alkali feldspar-mica-aluminosilicate equilibria (1991) (191)
- Review Paper. Mineral evolution (2008) (181)
- Evolution of uranium and thorium minerals (2009) (179)
- Dielectric properties of water under extreme conditions and transport of carbonates in the deep Earth (2013) (148)
- A model of surface site types on oxide and silicate minerals based on crystal chemistry; implications for site types and densities, multi-site adsorption, surface infrared spectroscopy, and dissolution kinetics (1998) (147)
- The Chemistry of Carbon in Aqueous Fluids at Crustal and Upper-Mantle Conditions: Experimental and Theoretical Constraints (2012) (142)
- Nitrogen speciation in upper mantle fluids and the origin of Earth's nitrogen-rich atmosphere (2014) (136)
- Interpretation and prediction of triple-layer model capacitances and the structure of the oxide-electrolyte-water interface (2001) (134)
- Important role for organic carbon in subduction-zone fluids in the deep carbon cycle (2014) (126)
- In situ Raman study and thermodynamic model of aqueous carbonate speciation in equilibrium with aragonite under subduction zone conditions (2014) (124)
- The role of electrolyte anions (ClO 4 (super -) , NO 3 (super -) , and Cl (super -) ) in divalent metal (M (super 2+) ) adsorption on oxide and hydroxide surfaces in salt solutions (1999) (121)
- The origin of a mississippi valley-type deposit in the Viburnum Trend, Southeast Missouri (1981) (120)
- Solvation and electrostatic model for specific electrolyte adsorption (1997) (119)
- A surface complexation model for sulfate and selenate on iron oxides consistent with spectroscopic and theoretical molecular evidence (2007) (107)
- Standard states for the activities of mineral surface sites and species (2003) (107)
- Prediction of the speciation of alkaline earths adsorbed on mineral surfaces in salt solutions (2006) (104)
- Physical surface-complexation models for sorption at the mineral–water interface (1993) (102)
- Summary of the Apparent Standard Partial Molal Gibbs Free Energies of Formation of Aqueous Species, Minerals, and Gases at Pressures 1 to 5000 Bars and Temperatures 25 to 1000 °C (1995) (101)
- A linear free energy relationship for crystalline solids and aqueous ions (1992) (99)
- A predictive model (ETLM) for As(III) adsorption and surface speciation on oxides consistent with spectroscopic data (2006) (96)
- Highly oxidising fluids generated during serpentinite breakdown in subduction zones (2017) (94)
- Clay mineral evolution (2013) (93)
- A predictive model (ETLM) for arsenate adsorption and surface speciation on oxides consistent with spectroscopic and theoretical molecular evidence (2007) (88)
- The role of migrating oil field brines in the formation of sediment-hosted Cu-rich deposits (1987) (87)
- Detection of surface hydroxyl species on quartz, γ-alumina, and feldspars using diffuse reflectance infrared spectroscopy (1997) (81)
- The Great Oxidation Event and Mineral Diversification (2010) (79)
- Anion adsorption on oxide surfaces: inclusion of the water dipole in modeling the electrostatics of ligand exchange. (2006) (78)
- Diamond formation due to a pH drop during fluid–rock interactions (2015) (77)
- Geochemical modeling of the formation of an unconformity-type uranium deposit (1996) (74)
- Prediction of Gibbs free energies of calcite-type carbonates and the equilibrium distribution of trace elements between carbonates and aqueous solutions (1984) (73)
- Attachment of L-glutamate to rutile (alpha-TiO(2)): a potentiometric, adsorption, and surface complexation study. (2009) (71)
- Mercury (Hg) mineral evolution: A mineralogical record of supercontinent assembly, changing ocean geochemistry, and the emerging terrestrial biosphere (2012) (68)
- Experimental study of iron-chloride complexing in hydrothermal fluids (1992) (65)
- A single-site model for divalent transition and heavy metal adsorption over a range of metal concentrations. (2002) (65)
- Theoretical prediction of single-site enthalpies of surface protonation for oxides and silicates in water (1998) (62)
- Evaluating glutamate and aspartate binding mechanisms to rutile (α-TiO2) via ATR-FTIR spectroscopy and quantum chemical calculations. (2011) (62)
- Rhenium variations in molybdenite (MoS2): Evidence for progressive subsurface oxidation (2013) (61)
- Adsorption of nucleic acid components on rutile (TiO(2)) surfaces. (2010) (61)
- Needs and opportunities in mineral evolution research (2011) (60)
- Extended Deep Earth Water Model for predicting major element mantle metasomatism (2019) (58)
- The adsorption of short single-stranded DNA oligomers to mineral surfaces. (2009) (57)
- Geosurf: a computer program for modeling adsorption on mineral surfaces from aqueous solution (1998) (55)
- Phase relations in ternary portions of the system Pt-Pd-Fe-As-S (1976) (55)
- Speciation of adsorbed yttrium and rare earth elements on oxide surfaces (2008) (54)
- Adsorption of L-aspartate to rutile (α-TiO2): Experimental and theoretical surface complexation studies (2010) (52)
- Linear free energy relations for predicting dissolution rates of solids (1992) (48)
- Lead isotope zoning in galena; an ion microprobe study of a galena crystal from the Buick Mine, Southeast Missouri (1981) (48)
- Adsorption and surface complexation study of L-DOPA on Rutile (α-TiO₂) in NaCl solutions. (2011) (48)
- Immiscible hydrocarbon fluids in the deep carbon cycle (2017) (48)
- Catalytic peptide hydrolysis by mineral surface: Implications for prebiotic chemistry (2010) (47)
- The distribution of divalent trace elements between sulfides, oxides, silicates and hydrothermal solutions: I. Thermodynamic basis (1985) (46)
- Silicate dissolution boosts the CO2 concentrations in subduction fluids (2017) (45)
- The relationship between mantle pH and the deep nitrogen cycle (2017) (42)
- Calculation of the thermodynamic properties of aqueous species and the solubilities of minerals in supercritical electrolyte solutions (1987) (41)
- A model for late Archean chemical weathering and world average river water (2017) (40)
- Isotopic alteration of carbonate host rocks as a function of water to rock ratio; an example from the Upper Mississippi Valley zinc-lead district (1981) (39)
- Carbon Mineral Evolution (2013) (38)
- Glutamate surface speciation on amorphous titanium dioxide and hydrous ferric oxide. (2008) (37)
- Experimental determination of magnesia and silica solubilities in graphite-saturated and redox-buffered high-pressure COH fluids in equilibrium with forsterite + enstatite and magnesite + enstatite (2017) (36)
- Tracing great fluid migrations (1992) (35)
- Subduction hides high-pressure sources of energy that may feed the deep subsurface biosphere (2020) (34)
- The lead and sulfur isotopic compositions of galena from a mississippi valley-type deposit in the New Lead Belt, Southeast Missouri (1979) (34)
- Quantification of the effects of organic and carbonate buffers on arsenate and phosphate adsorption on a goethite-based granular porous adsorbent. (2011) (32)
- Carbon speciation in saline solutions in equilibrium with aragonite at high pressure (2016) (32)
- Speciation of L-DOPA on nanorutile as a function of pH and surface coverage using surface-enhanced Raman spectroscopy (SERS). (2012) (31)
- Mineral Evolution: Episodic Metallogenesis, the Supercontinent Cycle, and the Coevolving Geosphere and Biosphere (2014) (29)
- Attachment of ribonucleotides on α-alumina as a function of pH, ionic strength, and surface loading. (2015) (26)
- Prediction of the thermodynamic properties of aqueous metal complexes to 1000 degrees C and 5 kb. (1997) (23)
- Thermodynamic modelling of fluids from surficial to mantle conditions (2019) (22)
- Cooperative and competitive adsorption of amino acids with Ca²⁺ on rutile (α-TiO₂). (2014) (22)
- Mobility of nutrients and trace metals during weathering in the late Archean (2017) (20)
- Pre-ore hydrothermal alteration in an unconformity-type uranium deposit (1995) (19)
- A high-pressure NMR probe for aqueous geochemistry. (2014) (19)
- Hydrothermal alteration and the chemistry of ore-forming fluids in an unconformity-type uranium deposit (1995) (19)
- Dissolution susceptibility of glass-like carbon versus crystalline graphite in high-pressure aqueous fluids and implications for the behavior of organic matter in subduction zones (2020) (18)
- The effects of temperature, pH and redox state on the stability of glutamic acid in hydrothermal fluids (2014) (17)
- Binding of Nucleic Acid Components to the Serpentinite-Hosted Hydrothermal Mineral Brucite. (2018) (15)
- Atomic-scale surface roughness of rutile and implications for organic molecule adsorption. (2013) (15)
- Mobility of chromium in high temperature crustal and upper mantle fluids (2019) (14)
- Interaction between L-aspartate and the brucite (Mg(OH) 2 )-water interface (2015) (14)
- Aspartate transformation at 200 °C with brucite [Mg(OH) 2 ], NH 3 , and H 2 : Implications for prebiotic molecules in hydrothermal systems (2017) (13)
- In-situ characterization of oxalic acid breakdown at elevated P and T: Implications for organic C-O-H fluid sources in petrologic experiments (2014) (13)
- Redox states of Archean surficial environments: The importance of H2,g instead of O2,g for weathering reactions (2019) (13)
- Hydrogen enhances the stability of glutamic acid in hydrothermal environments (2014) (10)
- The Changing Character of Carbon in Fluids with Pressure (2020) (10)
- Subducted organic matter buffered by marine carbonate rules the carbon isotopic signature of arc emissions (2022) (8)
- The role of fluid inclusions in the exsolution of clinopyroxene in bustamite from Broken Hill, New South Wales, Australia (1977) (8)
- Mixing of carbonatitic into saline fluid during panda diamond formation (2020) (6)
- Cooperative and Inhibited Adsorption of d-Ribose onto Brucite [Mg(OH)2] with Divalent Cations (2017) (3)
- The Great Oxidation Event and Mineral Diversifi cation THE RISE OF OXYGEN (3)
- A genetic metasomatic link between eclogitic and peridotitic diamond inclusions (2021) (3)
- Mineralogical coevolution of the geo- and biospheres (2008) (3)
- The MELTS-DEW Connection: Integration of Thermodynamic Models for Magmatic Systems and Aqueous Fluids at Elevated Temperatures and Pressures (2016) (2)
- Processes in the ocean: hydrothermal processes at seafloor spreading centers. (1984) (2)
- Selective Adsorption of Aspartate Facilitated by Calcium on Brucite [Mg(OH)2] (2018) (2)
- Water-Gas Shift Reaction Produces Formate at Extreme Pressures and Temperatures in Deep Earth Fluids. (2021) (2)
- Rücktitelbild: A High‐Pressure NMR Probe for Aqueous Geochemistry (Angew. Chem. 37/2014) (2014) (1)
- Chromium Redox Equilibria in Fluids and Minerals under Hydrothermal and Subduction-zone Conditions (2015) (1)
- Solubility of Aragonite in Subduction Water-Rich Fluids (2017) (1)
- Oxidation state during weathering on the early Earth (2008) (1)
- Interaction of ribonucleotides with oxide and silicate minerals under varying environmental conditions (2013) (1)
- Immiscible Hydrocarbon and Aqueous Fluids Under Subduction Zone Conditions and Implications for the Deep Carbon Cycle (2015) (1)
- Back Cover: A High‐Pressure NMR Probe for Aqueous Geochemistry (Angew. Chem. Int. Ed. 37/2014) (2014) (1)
- Solubility of magnesium silicates and carbonates in high-pressure COH fluids (2018) (0)
- THE CO-EVOLUTION OF THE GEO- AND BIOSPHERES: AN INTEGRATED PROGRAM FOR DATA-DRIVEN, ABDUCTIVE DISCOVERY IN THE EARTH SCIENCES (2016) (0)
- In situ Raman study of dissolved CaCO 3 minerals under subduction zone conditions (2012) (0)
- Modelling Zr Transport in Crustal and Mantle Fluids (2020) (0)
- Nitrogen is Not Always Noble in the Mantle (2014) (0)
- MoS2 and ReS2 Stabilities as Indicators of the Oxidation State on the Early Earth (2008) (0)
- Deep Earth Water Model for Predicting the Formation of Immiscible Hydrocarbons in Subduction Zones (2022) (0)
- Hans P. Eugster Memorial Symposium (1988) (0)
- Upper mantle fluids involved in diamond formation and mantle metasomatism (2014) (0)
- Tracing Earth's O 2 Evolution Using Zn/Fe Systematics in Carbonates (2014) (0)
- Formation of hydrocarbons favors high pressure at subduction zones conditions: a study from in-situ experiments (2021) (0)
- L-lysine adsorption on oxide surfaces as a function of environmental conditions (2010) (0)
- Interactions between glycine derivatives and mineral surfaces: Implications for the origins of life on planetary surfaces (2009) (0)
- Predictive Surface Complexation Modeling (2016) (0)
- Water Gas May Not Shift in Deep Earth (2020) (0)
- Hydrothermal alteration and the chemistry of ore-forming fluids in an unco ~ l ' ormity-type uramum deposit (2010) (0)
- Needs and opportunities in mineral evolution research this benefits you. (2011) (0)
- Modelling the formation of diamond inclusions during fluid-rock metasomatism (2022) (0)
- Diamonds , carbonate melts and carbon-bearing aqueous fluids in eclogites (2014) (0)
- Kinetic Studies of Amino Acid Adsorption on Rutile (2008) (0)
- Dissolution of Subducted Ocean Carbonates and Organic Matter Controls the Carbon Isotopic Signature of the Mantle Wedge (2020) (0)
- Dielectric properties of water and their impact on the Earth's deep carbon cycle (2013) (0)
- Thematic set : Carbon forms : paths and processes in the Earth Journal of the Geological Society (2019) (0)
- K and Ti metasomatism of the mantle wedge by fluids under sub-arc conditions (2020) (0)
- Formation of hydrocarbons favored by high pressure at subduction zone conditions (2023) (0)
- Global hydrogen production in subducting slabs (2021) (0)
- On the Evolution of Mineral Biosignatures (2008) (0)
- Geochemical and Biochemical Co-Evolution of Uranium and Thorium Minerals (2008) (0)
- Organic and inorganic molecules as probes of mineral surfaces (Invited) (2010) (0)
- Highly oxidising fluids generated during serpentinite breakdown in subduction zones (2017) (0)
- Silicate dissolution boosts the CO2 concentrations in subduction fluids (2017) (0)
- ROLE OF ENVIRONMENTAL CONDITIONS ON THE INTERACTION OF L-ARGININE WITH OXIDE MINERAL SURFACES (2009) (0)
- A Predictive Model of Surface Charge on Oxides in Aqueous Electrolyte Solutions: The Extended Triple Layer Model (ETLM) (1998) (0)
- Infrared Spectroscopic Evidence of Surface Speciation of Amino Acids on Titanium Dioxide (2008) (0)
- A Single-Site Model for Metal Adsorption Over a Range of Surface Coverages (1999) (0)
- Reduction and abiotic synthesis of hydrocarbons in subduction zones: widespread or anecdotal? (2018) (0)
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