Ionomer thin‐films (i.e., 20–100 nm) on supports serve as model systems to understand ionomer‐catalyst interfacial behavior as well as the confinement‐driven deviation in properties from bulk membranes. While ionomer thin‐films have been examined for proton exchange ionomers, the thin‐film properties of anion exchange ionomers (AEIs) remain largely unexplored. More importantly, delineating the convoluted impact of chemistry and confinement on thin‐film morphology and hydration is of interest to advancing the field on functional ionic interfaces. In this work, these aspects are studied by using AEIs of different backbones (perfluorinated, aliphatic, and aromatic) and side chains (various lengths, and single versus dual functional groups). Qu...
The structure of ion-rich regions and the correlations between the ion conductivity, hydration level...
Abstract As one of the most crucial components, the catalyst layer (CL) plays a critical role in the...
Interfacial behavior of submicron thick polymer films critically controls the performance of electro...
Ionomer thin-films (i.e., 20–100 nm) on supports serve as model systems to understand ionomer-c...
Existing state-of-the-art electrochemical devices like polymer-electrolyte fuel cells (PEFCs) and ot...
International audienceThe effective mobility of hydroxide, chloride and fluoride ions is reported in...
We have studied the solubility, mechanical properties, and mass transport behavior of a series of me...
The synthesis of multiblock anion exchange membranes (AEMs) by chemical modification is a relatively...
The performance of ion-conducting polymer membranes is complicated by an intricate interplay between...
Proton conducting ionomers are widely used for electrochemical applications including fuel-cell devi...
Perfluorinated sulfonic acid (PFSA) ionomers are the most widely used solid electrolyte in electroch...
The stability of anion exchange membranes is paramount for the use in alkaline fuel cells. Long-chai...
The potential of anion exchange membrane (AEM) fuel cells to provide inexpensive compact power from ...
The nanoscale structure of the ionomer film located in the catalyst layer of polymer exchange membra...
The structure and transport characteristics in a novel family of ionomers consisting of a hydrophobi...
The structure of ion-rich regions and the correlations between the ion conductivity, hydration level...
Abstract As one of the most crucial components, the catalyst layer (CL) plays a critical role in the...
Interfacial behavior of submicron thick polymer films critically controls the performance of electro...
Ionomer thin-films (i.e., 20–100 nm) on supports serve as model systems to understand ionomer-c...
Existing state-of-the-art electrochemical devices like polymer-electrolyte fuel cells (PEFCs) and ot...
International audienceThe effective mobility of hydroxide, chloride and fluoride ions is reported in...
We have studied the solubility, mechanical properties, and mass transport behavior of a series of me...
The synthesis of multiblock anion exchange membranes (AEMs) by chemical modification is a relatively...
The performance of ion-conducting polymer membranes is complicated by an intricate interplay between...
Proton conducting ionomers are widely used for electrochemical applications including fuel-cell devi...
Perfluorinated sulfonic acid (PFSA) ionomers are the most widely used solid electrolyte in electroch...
The stability of anion exchange membranes is paramount for the use in alkaline fuel cells. Long-chai...
The potential of anion exchange membrane (AEM) fuel cells to provide inexpensive compact power from ...
The nanoscale structure of the ionomer film located in the catalyst layer of polymer exchange membra...
The structure and transport characteristics in a novel family of ionomers consisting of a hydrophobi...
The structure of ion-rich regions and the correlations between the ion conductivity, hydration level...
Abstract As one of the most crucial components, the catalyst layer (CL) plays a critical role in the...
Interfacial behavior of submicron thick polymer films critically controls the performance of electro...