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Showing 1 to 7 of 7 for “"Prussian blue analogues"”.
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Non-Precious Metal-Based Electrocatalysts from Prussian Blue Analogues for Energy-Related Reaction
… compositions and tuning surface active sites. Prussian blue analogues (PBAs) with open frameworks have attracted growing attention as hopeful precursors to diverse transition metal-based electrocatalysts due to their easy preparation, low cost, tuneable compositions and flexibility. In this …
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Ab initio study of effects of interstitial species on electrochemical and mechanical properties of prussian blue analogues
The student, Sizhe Liu, accepted the attached license on 2021-07-12 at 17:37.
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Fabrication, characterization, and optimization of porous electrodes for electrochemical desalination
… Faradaic electrodes, such as those composed of Prussian blue analogues (PBAs), having high ion storage capacity. However, when compared with desalination technologies such as reverse osmosis, FDI is currently limited by impractically high energy consumption and low salt removal. The work in this …
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Molecular-based magnets constructed from cyanometalate building blocks
Solids related to Prussian blue (FeII,3lFen(CN)6]2,JcH20) are shown to be ideal candidates for the preparation of molecular-based magnets with high magnetic ordering temperatures: they can be easily prepared from well-characterized cyanometalate building blocks, the metal centers are linked …
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Photothermal and Photoelectric Effects in Lithium-Ion Batteries: Mechanistic Insights and Performance Enhancement
… due to the low capacity and degradation. Prussian blue analogues (PBAs) were then selected for their photothermal heating efficiency and compatibility as cath- odes in photothermal-enhanced Li-ion batteries. Electrochemical testing under illuminated and dark conditions demonstrated that …
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Electrochemical Tape-and-Paper-Based Sensor for the Quantification of Potassium
… or even home-use. Our sensing method relies on Prussian blue immobilized on the surface of electrodes as a potassium recognition element. Potassium ions intercalate into the Prussian blue lattice and subsequently changes the electrochemical characteristics of Prussian blue such as the redox peak …
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Characterization of redox active materials to enable electrochemical separations through faradaic deionization
Faradaic deionization (FDI) is an emerging electrochemical separations technique which has received tremendous research interest in the past decade. Established electrochemical separations techniques such as capacitive deionization are limited by low charge storage capacity due to electric double …