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Replacing CO2 with CO at the cathode and integrating a catholyte‐layer membrane electrode assembly transforms paired electrolysis into a stable platform for co‐producing ethylene and 2,5‐furandicarboxylic acid. Combined experimental and techno‐economic analyses identify carbon monoxide and 5‐hydroxymethylfurfural as the most compatible pairing ...
Mi‐Young Lee +10 more
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Surface molecular engineering to enable processing of sulfide solid electrolytes in humid ambient air. [PDF]
Liu M +17 more
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Influence of Surfaces on Ion Transport and Stability in Antiperovskite Solid Electrolytes at the Atomic Scale. [PDF]
Dutra ACC, Quirk JA, Zhou Y, Dawson JA.
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Host-Guest Inversion Engineering Induced Superionic Composite Solid Electrolytes for High-Rate Solid-State Alkali Metal Batteries. [PDF]
Liu XX +8 more
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The Impact of Boron Compounds on the Structure and Ionic Conductivity of LATP Solid Electrolytes. [PDF]
Öksüzoğlu F +6 more
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Designing lithium halide solid electrolytes. [PDF]
Wang Q +13 more
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Performance of Organic Electrochemical Transistors with Ionic Liquid Crystal Elastomers as Solid Electrolytes. [PDF]
Alyami A +4 more
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Electrochimica Acta, 1977
New Li-ion conductors with several different structure types are reported. Li4B7O12(Cl,Br) and LiM2P3O12 (MZr, Hf) have framework structures. The others are based on structures with isolated polyhedra in a network of edge-linked Li polyhedra and include Li2+xC1−xBxO3, Li3−x B1−xCxO3, Li4+xSi1−xSi1−xAlxO4, Li4−xSi1−xPxO4, Li4−2xSi1−xSxO4 and Li 5−xAl1 ...
R.D. SHANNON +3 more
openaire +1 more source
New Li-ion conductors with several different structure types are reported. Li4B7O12(Cl,Br) and LiM2P3O12 (MZr, Hf) have framework structures. The others are based on structures with isolated polyhedra in a network of edge-linked Li polyhedra and include Li2+xC1−xBxO3, Li3−x B1−xCxO3, Li4+xSi1−xSi1−xAlxO4, Li4−xSi1−xPxO4, Li4−2xSi1−xSxO4 and Li 5−xAl1 ...
R.D. SHANNON +3 more
openaire +1 more source

