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, , , , , , , , , , and ."Morphology and Transport of Multivalent Cation-Exchanged Ionomer Membranes Using Perfluorosulfonic Acid–Ce<sup> <i>Z</i>+</sup>as a Model System."ACS Applied Polymer Materials
2.8 (2020) 3642 - 3656. DOI
, , , , , , , , and ."Dynamic Emergence of Nanostructure and Transport Properties in Perfluorinated Sulfonic Acid Ionomers."Macromolecules
53.19 (2020) 8519 - 8528. DOI
, , , and ."Modeling proton-exchange-membrane fuel cell performance/degradation tradeoffs with chemical scavengers."Journal of Physics: Energy
2.4 (2020) 044006. DOI
, , , and ."Electric-field-intensity-modulated scattering as a thin-film depth probe."Journal of Applied Crystallography
53.6 (2020) 1484 - 1492. DOI
, , , , , , , , and ."Impact of Dispersion Solvent on Ionomer Thin Films and Membranes."ACS Applied Polymer Materials
2.12 (2020) 5824 - 5834. DOI
, , , , , , , , , , , , , , , , , and ."Recent developments in catalyst-related PEM fuel cell durability."Current Opinion in Electrochemistry
21 (2020) 192 - 200. DOI
, , , , , , , , and ."Modifying the Electrocatalyst–Ionomer Interface via Sulfonated Poly(ionic liquid) Block Copolymers to Enable High-Performance Polymer Electrolyte Fuel Cells."ACS Energy Letters
5.6 (2020) 1726 - 1731. DOI
, , , , , , , , , , , , , , , and ."Eliminating dissolution of platinum-based electrocatalysts at the atomic scale."Nature Materials
19.11 (2020) 1207-1214. DOI
, , , and ."Interplay between Swelling Kinetics and Nanostructure in Perfluorosulfonic Acid Thin-Films: Role of Hygrothermal Aging."ACS Applied Polymer Materials
1.4 (2019) 631 - 635. DOI
, , , , , , , , , , , , , and ."Mass-transport properties of electrosprayed Pt/C catalyst layers for polymer-electrolyte fuel cells."Journal of Power Sources
427 (2019) 250 - 259. DOI