A strategic spin‐polarization suppression in Fe single‐atom catalysts is proposed to enhance electrocatalytic reduction of NO to NH3. Employing a top‐down electrospinning strategy, self‐supported FeSAC with Fe‐N3S1 coordination structure and spin‐state transition is engineered from high‐spin to low‐spin.
Jialing Song +13 more
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Li<sup>+</sup>-migration influencing factors and non-destructive life extension of quasi-solid-state polymer electrolytes. [PDF]
Li P +11 more
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To Hop or Not to Hop: Unveiling Different Modes of Ion Transport in Solid Polymer Electrolytes through Molecular Dynamics Simulations. [PDF]
Gudla H +3 more
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Application of cellulose/poly(vinylidene fluoride) blend films as polymer electrolytes in lithium ion batteries. [PDF]
Mohamadzade S +3 more
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Sodium hexafluorophosphate mediated enhancement of electrical and electrochemical properties of poly(vinyl alcohol)-chitosan solid polymer electrolytes for EDLCs. [PDF]
Cyriac V +6 more
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3D Printable Polymer Electrolytes for Ionic Conduction based on Protic Ionic Liquids. [PDF]
Lange A +10 more
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Sulfonated White-Graphene for High-Performance Gel Polymer Electrolytes: The Interplay between Ion Conductivity and Rheology. [PDF]
Eslami R +4 more
europepmc +1 more source
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This review article covers applications in which polymer electrolytes are used: lithium batteries, fuel cells, and water desalination. The ideas of electrochemical potential, salt activity, and ion transport are presented in the context of these applications.
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