Search Results - "Kingsbury, Ryan"
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Energy storage by reversible electrodialysis: The concentration battery
Published in Journal of membrane science (01-12-2015)“…Reverse electrodialysis has long been recognized as a tool for harnessing free energy from salinity gradients but has received little attention for its…”
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Impact of solution composition on the resistance of ion exchange membranes
Published in Journal of membrane science (15-05-2018)“…Resistance to ion transport in ion exchange membranes (IEMs) is detrimental to the performance of IEM-based processes. In this work we measured the resistance…”
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Enabling selective zinc-ion intercalation by a eutectic electrolyte for practical anodeless zinc batteries
Published in Nature communications (27-05-2023)“…Two major challenges hinder the advance of aqueous zinc metal batteries for sustainable stationary storage: (1) achieving predominant Zn-ion (de)intercalation…”
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Osmotic Ballasts Enhance Faradaic Efficiency in Closed-Loop, Membrane-Based Energy Systems
Published in Environmental science & technology (07-02-2017)“…Aqueous processes for energy storage and conversion based on reverse electrodialysis (RED) require a significant concentration difference across ion exchange…”
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5
Effect of osmotic ballast properties on the performance of a concentration gradient battery
Published in Water research (Oxford) (01-04-2022)“…•Sugars, glycols studied as organic ballasts in a concentration gradient battery.•Ballast addition to the dilute solution increased faradaic and energy…”
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A framework for quantifying uncertainty in DFT energy corrections
Published in Scientific reports (29-07-2021)“…In this work, we demonstrate a method to quantify uncertainty in corrections to density functional theory (DFT) energies based on empirical results. Such…”
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Partitioning of Alkali Metal Salts and Boric Acid from Aqueous Phase into the Polyamide Active Layers of Reverse Osmosis Membranes
Published in Environmental science & technology (21-02-2017)“…The partition coefficient of solutes into the polyamide active layer of reverse osmosis (RO) membranes is one of the three membrane properties (together with…”
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Aqueous Stability of Zirconium Clusters, Including the Zr(IV) Hexanuclear Hydrolysis Complex [Zr6O4(OH)4(H2O)24]12+, from Density Functional Theory
Published in Inorganic chemistry (18-10-2021)“…Framework materials constitute a broad family of solids that range from zeolites and metal–organic frameworks (MOFs) to coordination polymers. The synthesis of…”
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Junction Potentials Bias Measurements of Ion Exchange Membrane Permselectivity
Published in Environmental science & technology (17-04-2018)“…Ion exchange membranes (IEMs) are versatile materials relevant to a variety of water and waste treatment, energy production, and industrial separation…”
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10
Zinc Titanium Nitride Semiconductor toward Durable Photoelectrochemical Applications
Published in Journal of the American Chemical Society (03-08-2022)“…Photoelectrochemical fuel generation is a promising route to sustainable liquid fuels produced from water and captured carbon dioxide with sunlight as the…”
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Effect of magnetic ion exchange and ozonation on disinfection by-product formation
Published in Water research (Oxford) (01-03-2013)“…The purpose of this research was to investigate the performance of treatment with magnetic ion exchange (MIEX) resin followed by ozonation in achieving…”
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A flexible and scalable scheme for mixing computed formation energies from different levels of theory
Published in npj computational materials (13-09-2022)“…Computational materials discovery efforts are enabled by large databases of properties derived from high-throughput density functional theory (DFT), which now…”
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Unifying the Conversation: Membrane Separation Performance in Energy, Water, and Industrial Applications
Published in ACS ES&T engineering (09-02-2024)“…Dense polymer membranes enable a diverse range of separations and clean energy technologies, including gas separation, water treatment, and renewable fuel…”
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pyEQL: A Python interface for water chemistry
Published in Journal of open source software (25-03-2024)Get full text
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Unveiling the role of membrane properties in water and salt transport and performance of a concentration gradient battery
Published in Desalination (20-07-2024)“…The concentration gradient battery (CGB) has numerous advantages, such as zero pollution emissions and the use of non-toxic electrolytes, making it a promising…”
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Tuning the Solvation Structure in Aqueous Zinc Batteries to Maximize Zn-Ion Intercalation and Optimize Dendrite-Free Zinc Plating
Published in ACS energy letters (14-01-2022)“…Aqueous zinc batteries are recognized to suffer from H+/Zn2+ coinsertion in the cathode, but few approaches have been reported to suppress deleterious H+…”
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Tunable Anion Exchange Membrane Conductivity and Permselectivity via Non-Covalent, Hydrogen Bond Cross-Linking
Published in ACS applied materials & interfaces (10-11-2021)“…Ion exchange membranes (IEMs) are a key component of electrochemical processes that purify water, generate clean energy, and treat waste. Most conventional…”
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A reverse-selective ion exchange membrane for the selective transport of phosphates via an outer-sphere complexation–diffusion pathway
Published in Nature nanotechnology (01-11-2022)“…Specific-ion selectivity is a highly desirable feature for the next generation of membranes. However, existing membranes rely on differences in charge, size…”
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Tunable Anion Exchange Membrane Conductivity and Permselectivity via Non-Covalent, Hydrogen Bond Cross-Linking
Published in ACS applied materials & interfaces (27-10-2021)“…Ion exchange membranes (IEMs) are a key component of electrochemical processes that purify water, generate clean energy, and treat waste. Most conventional…”
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Temporal variation of power production via reverse electrodialysis using coastal North Carolina waters and its correlation to temperature and conductivity
Published in Desalination (01-10-2020)“…Global estimates of electricity generation from coastal salinity gradient energy resources rely on the underlying assumption that these gradients are spatially…”
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