A guide to ion separations for the global energy transition
pyEQL: A Python interface for water chemistry
A database of molecular properties integrated in the Materials Project
Enabling selective zinc-ion intercalation by a eutectic electrolyte for practical anodeless zinc batteries
SolvationAnalysis: A Python toolkit for understanding liquid solvation structure in classical molecular dynamics simulations
A reverse-selective ion exchange membrane for the selective transport of phosphates via an outer-sphere complexation-diffusion pathway
Screening of bimetallic electrocatalysts for water purification with machine learning
Effect of osmotic ballast properties on the performance of a concentration gradient battery
Tuning the Solvation Structure in Aqueous Zinc Batteries to Maximize Zn-Ion Intercalation and Optimize Dendrite-Free Zinc Plating
Temporal variation of power production via reverse electrodialysis using coastal North Carolina waters and its correlation to temperature and conductivity
Composition and Critical Mineral Content of Major Industrial Wastewaters: Implications for Treatment and Resource Recovery
Hygroscopicity-driven spontaneous sustainable direct lithium extraction
Accelerated data-driven materials science with the Materials Project
Electrolytic hydrogen production from acidified wastewater effluent
Atomate2: Modular workflows for materials science
Electrochemical Li+ enrichment of mixed-cation brines with antiselective polymer membranes
Microporous polymer sorbents for direct lithium extraction
Unveiling the role of membrane properties in water and salt transport and performance of a concentration gradient battery
Kinetic barrier networks reveal rate limitations in ion-selective membranes
Unifying the conversation: Membrane separation performance in energy, water, and industrial applications
A flexible and scalable scheme for mixing computed formation energies from different levels of theory
Performance comparison of r2SCAN and SCAN metaGGA density functionals for solid materials via an automated, high-throughput computational workflow
Zinc titanium nitride semiconductor toward durable photoelectrochemical applications
Tunable Anion Exchange Membrane Conductivity and Permselectivity via Non-Covalent, Hydrogen Bond Cross-Linking
Aqueous Stability of Zirconium Clusters, Including the Zr(IV) Hexanuclear Hydrolysis Complex [Zr6O4(OH)4(H2O)24]12+, from Density Functional Theory
A framework for quantifying uncertainty in DFT energy corrections
Modeling and validation of concentration dependence of ion exchange membrane permselectivity: Significance of convection and Manning's counter-ion condensation theory
Comparison of water and salt transport properties of ion exchange, reverse osmosis, and nanofiltration membranes for desalination and energy applications
Influence of Water Uptake, Charge, Manning Parameter and Contact Angle on Water and Salt Transport in Commercial Ion Exchange Membranes
Microstructure determines water and salt permeation in commercial ion exchange membranes
Junction potentials bias measurements of ion exchange membrane permselectivity
Partitioning of Alkali Metal Salts and Boric Acid from Aqueous Phase into the Polyamide Active Layers of Reverse Osmosis Membranes
Osmotic ballasts enhance faradaic efficiency in closed-loop, membrane-based energy systems
Energy storage by reversible electrodialysis: The concentration battery
Effect of magnetic ion exchange and ozonation on disinfection by-product formation
Accelerated data-driven materials science with the Materials Project
Atomate2: Modular workflows for materials science
A flexible and scalable scheme for mixing computed formation energies from different levels of theory
Screening of bimetallic electrocatalysts for water purification with machine learning
A framework for quantifying uncertainty in DFT energy corrections
c. boggs
1
chang li
2
duo wang
2
f. liu
1
fei liu
3
Unveiling the role of membrane properties in water and salt transport and performance of a concentration gradient battery
Effect of osmotic ballast properties on the performance of a concentration gradient battery
Temporal variation of power production via reverse electrodialysis using coastal North Carolina waters and its correlation to temperature and conductivity
gan chen
1
A reverse-selective ion exchange membrane for the selective transport of phosphates via an outer-sphere complexation-diffusion pathway
Tunable Anion Exchange Membrane Conductivity and Permselectivity via Non-Covalent, Hydrogen Bond Cross-Linking
Comparison of water and salt transport properties of ion exchange, reverse osmosis, and nanofiltration membranes for desalination and energy applications
Partitioning of Alkali Metal Salts and Boric Acid from Aqueous Phase into the Polyamide Active Layers of Reverse Osmosis Membranes
Accelerated data-driven materials science with the Materials Project
Atomate2: Modular workflows for materials science
A database of molecular properties integrated in the Materials Project
Enabling selective zinc-ion intercalation by a eutectic electrolyte for practical anodeless zinc batteries
SolvationAnalysis: A Python toolkit for understanding liquid solvation structure in classical molecular dynamics simulations
A flexible and scalable scheme for mixing computed formation energies from different levels of theory
Performance comparison of r2SCAN and SCAN metaGGA density functionals for solid materials via an automated, high-throughput computational workflow
Zinc titanium nitride semiconductor toward durable photoelectrochemical applications
Aqueous Stability of Zirconium Clusters, Including the Zr(IV) Hexanuclear Hydrolysis Complex [Zr6O4(OH)4(H2O)24]12+, from Density Functional Theory
A framework for quantifying uncertainty in DFT energy corrections
Unveiling the role of membrane properties in water and salt transport and performance of a concentration gradient battery
Effect of osmotic ballast properties on the performance of a concentration gradient battery
Tunable Anion Exchange Membrane Conductivity and Permselectivity via Non-Covalent, Hydrogen Bond Cross-Linking
Modeling and validation of concentration dependence of ion exchange membrane permselectivity: Significance of convection and Manning's counter-ion condensation theory
Temporal variation of power production via reverse electrodialysis using coastal North Carolina waters and its correlation to temperature and conductivity
Comparison of water and salt transport properties of ion exchange, reverse osmosis, and nanofiltration membranes for desalination and energy applications
Influence of Water Uptake, Charge, Manning Parameter and Contact Angle on Water and Salt Transport in Commercial Ion Exchange Membranes
Microstructure determines water and salt permeation in commercial ion exchange membranes
Junction potentials bias measurements of ion exchange membrane permselectivity
Partitioning of Alkali Metal Salts and Boric Acid from Aqueous Phase into the Polyamide Active Layers of Reverse Osmosis Membranes
Osmotic ballasts enhance faradaic efficiency in closed-loop, membrane-based energy systems
Energy storage by reversible electrodialysis: The concentration battery
s. zhu
2
shan zhu
3
Influence of Water Uptake, Charge, Manning Parameter and Contact Angle on Water and Salt Transport in Commercial Ion Exchange Membranes
Microstructure determines water and salt permeation in commercial ion exchange membranes
Junction potentials bias measurements of ion exchange membrane permselectivity
Accelerated data-driven materials science with the Materials Project
A flexible and scalable scheme for mixing computed formation energies from different levels of theory
Performance comparison of r2SCAN and SCAN metaGGA density functionals for solid materials via an automated, high-throughput computational workflow
A framework for quantifying uncertainty in DFT energy corrections
Influence of Water Uptake, Charge, Manning Parameter and Contact Angle on Water and Salt Transport in Commercial Ion Exchange Membranes
Microstructure determines water and salt permeation in commercial ion exchange membranes
Junction potentials bias measurements of ion exchange membrane permselectivity
wei you
2