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251 results for “Electrolyte”
Investigation of Fluid- and Electrolyte Balance in Post Cardiac-surgery Patients
ClinicalTrials.gov study NCT02914782. IPD Sharing: Not stated. Countries: 1. Publications: 9.
Determining the Effect of Spironolactone on Electrolyte Supplementation in Preterm Infants With Chronic Lung Disease
ClinicalTrials.gov study NCT01721655. IPD Sharing: Not stated. Countries: 1. Publications: 19.
Postural Tachycardia Syndrome and Vasovagal Syncope in Relation to Serum Electrolytes and Adrenal Insufficiency
ClinicalTrials.gov study NCT05695755. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Absorption of Peptides, Fluid, and Electrolytes in Patients With an Ileostomy
ClinicalTrials.gov study NCT04141826. IPD Sharing: YES. Countries: 1. Publications: 1.
Effectiveness of Mannitol Versus Polyethylene Glycol Electrolyte Dispersion as a Salve for Patients With Inadequate Bowel Preparation: a Randomized Controlled Clinical Trial
ClinicalTrials.gov study NCT05912114. IPD Sharing: Not stated. Countries: 1. Publications: 1.
The Effect of Mentholyptus Drops on the Palatability of PEG-Electrolyte Solution
ClinicalTrials.gov study NCT01541683. IPD Sharing: Not stated. Countries: 1. Publications: 1.
PEG-Electrolyte Solution (FORTRANS®) With Mentholyptus Drops (Halls®) Versus Reduced Volume Ascorbic Acid Supplemented PEG-Electrolyte (MoviPrep®) in Colonoscopy Preparation
ClinicalTrials.gov study NCT01788709. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Molecular dynamics trajectories for ionic conductors in: Paradigms of frustration in superionic solid electrolytes
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Realisation of solid-state electrochromic devices based on gel electrolyte
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Foliar summer frost resistance measured via electrolyte leakage approach as related to plant distribution, community composition and performance
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Data from: Probing lithium mobility at a solid electrolyte surface
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Genetic Diversity, Ecological Niches, and Climate Change Vulnerability of Aspens in the Upper Midwest:Electrolyte leakage and resistance to damage
Quaking aspen (Populus tremuloides) is the most cosmopolitan tree species in North America and an important native at Cedar Creek and across the Midwest. Aspen stands are quite common through eastern, central, and northern Minnesota, and occur sporadically in cool, wet microclimates across the Great Plains. Currently, these stands are in decline, are poorly reproducing in the wild, and are suffering from a range of stresses. Climate change associated phenomena, drought and altered freeze-thaw cycles, have contributed to massive aspen dieback, especially in the American West. We have received funding from the National Park Service to assess the genetic diversity and hybrid status, age structure and health, ecological niche and historical rate of range contraction, and drought and freezing tolerance physiology of an aspen stand of interest at the Niobrara National Scenic River (NNSR) in northern Nebraska. As part of this project, we are also studying genetic diversity and physiological vulnerability to climate change in quaking and bigtooth (P. grandidentata) aspen populations in Minnesota, Wisconsin, Iowa, South Dakota, and Nebraska. We will use genetic markers to identify genetically unique stands and compare growth and survival of these to populations of the parent species under different drought and freeze-thaw conditions. This study will allow us to better pinpoint the causes of decline in the NNSR aspen stands and aspen stands across the upper Midwest, and potentially provide guidance to managers on the prioritization of particular stands for conservation or in identifying genetic sources for any ex situ conservation or assisted migration.
LiPF6 Organic Electrolyte Conductivity
<p>This video shows the ionic conductivity of lithium hexafluorophosphate (LiPF6) dissolved in 10 vol% propylene carbonate (PC), 27 vol% ethylene carbonate (EC) and 63 vol% dimethyl carbonate (DMC) at different concentrations and temperatures. The animation is based on the data and empirical model proposed by Valøen et al (DOI: 10.1149/1.1872737). The animation is intended to be a demonstration for educational purposes. </p>
Data from: Electrolytic ablation enables cancer cell targeting through pH modulation
Minimally invasive ablation strategies enable locoregional treatment of tumors. Electrolytic ablation functions through the local delivery of direct current, without thermal effects, facilitating enhanced precision. However, the clinical application of electrolytic ablation is limited by an incompletely characterized mechanism of action. Here we show that acid and base production at the electrodes precipitates local pH changes causing the rapid cell death that underlies macroscopic tumor necrosis at pH > 10.6 or < 4.8. The extent of cell death can be modulated by altering the local buffering capacity and antioxidant availability. These data demonstrate that electrolytic ablation is distinguished from other ablation strategies via its ability to induce cellular necrosis by directly altering the tumor microenvironment. These findings may enable further development of electrolytic ablation as a curative therapy for primary, early stage tumors.
Metadata - Tuning the electrochemical performance of covalent organic framework cathodes for Li- and Mg-based batteries: the influence of electrolyte and binder
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Electrochemical Characterization and Modelling of Anode and Electrolyte Supported Solid Oxide Fuel Cells
<p>Datasets from the paper: "Electrochemical Characterization and Modelling of Anode and Electrolyte Supported Solid Oxide Fuel Cells", Front. Energy Res., 27 September 2021.</p> <p>The work was carried out within the framework of the European Project AD ASTRA. This project has received funding from the Fuel Cells and Hydrogen 2 Joint Undertaking under <strong>Grant Agreement No 825027</strong>. This Joint Undertaking receives support from the European Union's Horizon 2020 research and innovation programme and Hydrogen Europe.</p>
Data for The Contribution of the Ion−Ion and Ion−Solvent Interactions in a 2 Molecular Thermodynamic Treatment of Electrolyte Solutions
<p>Data for the figures in the publication Kournopoulos et al. JPCB 2022</p>
Phase stability criteria and fluid phase equilibria in strong-electrolyte systems
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3D-printed gelled electrolytes for electroanalytical applications
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Betaine–based natural deep eutectic solvents as sustainable electrolytes for the electrochemical energy storage devices
<p><span>The research project titled: <em>"</em></span><span><em><span>Betaine–based natural deep eutectic solvents as sustainable electrolytes for the electrochemical energy storage devices</span></em></span><em><span>"</span></em><span> focused on developing new, environmentally friendly liquid electrolytes for use in devices such as batteries, accumulators, and capacitors. The researchers concentrated on the development of so-called Natural Deep Eutectic Solvents (NADES) based on betaine and its derivatives, which have the potential to replace traditional, less eco-friendly electrolytes.</span></p> <p><span>Betaine is a natural chemical compound in plants like sugar beets, making it a fully renewable resource. Chemically, betaine is a derivative of the amino acid glycine, meaning it possesses a positive functional group at one end of the molecule and a negative charge at the opposite end. This gives betaine the characteristics of an ionic compound known as a zwitterion, which can be successfully used as <span>an electrolyte additive.</span></span></p> <p><span><span>During the </span>research, three different NADESs were synthesized, and betaine hydrochloride served as the hydrogen bond acceptor (HBA). At the same time, glycerol, ethylene glycol, and glycolic acid acted as hydrogen bond donors (HBD). The researchers then examined their physical properties, such as density, viscosity, pH, and conductivity, and assessed these substances' electrochemical stability.</span></p> <p><span>Among the studied NADES, the one based on betaine hydrochloride as the HBA and ethylene glycol as the HBD proved to be the most suitable electrolyte for supercapacitors due to its low viscosity and high ionic conductivity. Tests involving this substance demonstrated that devices using this electrolyte exhibited high specific capacitance and stability during prolonged use.</span></p> <p><span>The results confirm that NADES based on betaine can serve as a more sustainable alternative to conventional electrolytes, which is a step toward creating more environmentally friendly energy storage systems in the future.</span></p> <p><span>This research was founded on the whole by the National Science Centre, Poland (grant No. 2023/07/X/ST5/00629). For the purpose of Open Access, the author has applied a CC-BY public copyright to any Author Accepted Manuscript (AAM) version arising from this submission.</span></p>
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