Chemical and Morphological Origins of Improved Ion Conductivity in Perfluoro Ionene Chain Extended Ionomers
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作者:
Su, Gregory M.
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Lawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USALawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA
Su, Gregory M.
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Cordova, Isvar A.
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Lawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USALawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA
Cordova, Isvar A.
[1
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Yandrasits, Michael A.
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3M Corp, St Paul, MN 55144 USALawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA
Yandrasits, Michael A.
[2
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Lindell, Matthew
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3M Corp, St Paul, MN 55144 USALawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA
Lindell, Matthew
[2
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Feng, Jun
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Lawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USALawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA
Feng, Jun
[1
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Wang, Cheng
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Lawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USALawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA
Wang, Cheng
[1
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Kusoglu, Ahmet
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Lawrence Berkeley Natl Lab, Energy Technol Area, Energy Convers Grp, Berkeley, CA 94720 USALawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA
Kusoglu, Ahmet
[3
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机构:
[1] Lawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA
[2] 3M Corp, St Paul, MN 55144 USA
[3] Lawrence Berkeley Natl Lab, Energy Technol Area, Energy Convers Grp, Berkeley, CA 94720 USA
The performance of ion-conducting polymer membranes is complicated by an intricate interplay between chemistry and morphology that is challenging to understand. Here, we report on perfuoro ionene chain extended (PFICE) ionomers that contain either one or two bis(sulfonyl)imide groups on the side-chain in addition to a terminal sulfonic acid group. PFICE ionomers exhibit greater water uptake and conductivity compared to prototypical perfluorinated sulfonic acid ionomers. Advanced in situ synchrotron characterization reveals insights into the connections between molecular structure and morphology that dictate performance. Guided by first-principles calculations, X-ray absorption spectroscopy at the sulfur K-edge can discern distinct protogenic groups and be sensitive to hydration level and configurations that dictate proton dissociation. In situ resonant X-ray scattering at the sulfur K-edge reveals that PFICE ionomers have a phase-separated morphology with enhanced short-range order that persists in both dry and hydrated states. The enhanced conductivity of PFICE ionomers is attributed to a unique multi-acid side-chain chemistry and structure that facilitates proton dissociation at low water content in combination with a well-ordered phase-separated morphology with nanoscale transport pathways. Overall, these results provide insights for the design of new ionomers with tunable phase separation and improved transport properties as well as demonstrating the efficacy of X-rays with elemental sensitivity for unraveling structural features in chemically heterogeneous functional materials for electrochemical energy applications.
机构:
Chonbuk Natl Univ, Dept Life Sci, Jeonju 54896, South KoreaChonbuk Natl Univ, Dept Life Sci, Jeonju 54896, South Korea
Oh, Byeong Hun
Kim, Ae Rhan
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Chonbuk Natl Univ, R&D Ctr CANUTECH, Business Incubat Ctr, Jeonju 54896, South Korea
Chonbuk Natl Univ, Dept Bioenvironm Chem, Jeonju 54896, South KoreaChonbuk Natl Univ, Dept Life Sci, Jeonju 54896, South Korea
Kim, Ae Rhan
Yoo, Dong Jin
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机构:
Chonbuk Natl Univ, Dept Life Sci, Jeonju 54896, South Korea
Chonbuk Natl Univ, Dept Energy Storage Convers Engn, Hydrogen & Fuel Cell Res Ctr, Grad Sch, Jeonju 54896, South KoreaChonbuk Natl Univ, Dept Life Sci, Jeonju 54896, South Korea