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A monolayer graphene/phosphoric‐acid mixed proton‐electron conducting membrane combines proton‐conducting nanoconfined acid channels with electron‐conducting graphene nanosheets for efficient high‐temperature hydrogen purification. The membrane achieves nearly 100% H2/CO2 selectivity and 69 GPU hydrogen permeance at 250°C, arising from synergistic ...
Kaiqiang He +8 more
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Electrochemistry as a Tool for Redox-Based Bio-Information Processing. [PDF]
Kim E +8 more
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Electrochemistry of pyrenyl iron terpyridines on glassy carbon, gold, and CNT [PDF]
Lin, Hsiao-Chu
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Impacts of Quinone Structure on Trade-Offs Between Redox Potential and CO<sub>2</sub> Binding Strength. [PDF]
Taylor JS, Forse AC, Thom AJW.
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The Intricacies of Computational Electrochemistry. [PDF]
Govindarajan N +22 more
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Electrochemical Ferrier rearrangement of glycals in flow. [PDF]
Suman P +5 more
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Determination of Monoethylene Glycol in Gas Condensate Samples by Microchip Micellar Electrokinetic Chromatography Integrated With Capacitively Coupled Contactless Conductivity Detection. [PDF]
Pereira MML +6 more
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Editorial: Advances in two-dimensional materials for electrochemical energy conversion and storage. [PDF]
Yang C, Tang Y.
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Angewandte Chemie International Edition, 2013
AbstractA bipolar electrode (BPE) is an electrically conductive material that promotes electrochemical reactions at its extremities (poles) even in the absence of a direct ohmic contact. More specifically, when sufficient voltage is applied to an electrolyte solution in which a BPE is immersed, the potential difference between the BPE and the solution ...
Stephen E, Fosdick +3 more
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AbstractA bipolar electrode (BPE) is an electrically conductive material that promotes electrochemical reactions at its extremities (poles) even in the absence of a direct ohmic contact. More specifically, when sufficient voltage is applied to an electrolyte solution in which a BPE is immersed, the potential difference between the BPE and the solution ...
Stephen E, Fosdick +3 more
openaire +2 more sources

