On‐Water Surface Synthesis of Vinylene‐Linked Cationic Two‐Dimensional Polymer Films as the Anion‐Selective Electrode Coating

Author:

Yang Ye1,Sabaghi Davood1,Liu Chang234,Dianat Arezoo5,Mücke David6,Qi Haoyuan16,Liu Yannan1,Hambsch Mike7,Xu Zhi‐Kang23,Yu Minghao1,Cuniberti Gianaurelio58,Mannsfeld Stefan C. B.7,Kaiser Ute6,Dong Renhao19,Wang Zhiyong14,Feng Xinliang14ORCID

Affiliation:

1. Center for Advancing Electronics Dresden & Faculty of Chemistry and Food Chemistry Technische Universität Dresden 01069 Dresden Germany

2. MOE Engineering Research Center of Membrane and Water Treatment and Key Lab of Adsorption and Separation Materials & Technologies of Zhejiang Province Department of Polymer Science and Engineering Zhejiang University 310058 Hangzhou China

3. The “Belt and Road” Sino-Portugal Joint Lab on Advanced Materials International Research Center for X Polymers Zhejiang University 310058 Hangzhou China

4. Max Planck Institute of Microstructure Physics 06120 Halle Germany

5. Institute for Materials Science and Max Bergmann Center for Biomaterials Technische Universität Dresden 01069 Dresden Germany

6. Central Facility for Electron Microscopy Electron Microscopy of Materials Science Universität Ulm 89081 Ulm Germany

7. Center for Advancing Electronics Dresden & Faculty of Electrical and Computer Engineering Technische Universität Dresden 01062 Dresden Germany

8. Dresden Center for Computational Materials Science (DCMS) Technische Universität Dresden 01062 Dresden Germany

9. Key Laboratory of Colloid and Interface Chemistry of the Ministry of Education School of Chemistry and Chemical Engineering Shandong University 250100 Jinan China

Abstract

AbstractVinylene‐linked two‐dimensional polymers (V‐2DPs) and their layer‐stacked covalent organic frameworks (V‐2D COFs) featuring high in‐plane π‐conjugation and robust frameworks have emerged as promising candidates for energy‐related applications. However, current synthetic approaches are restricted to producing V‐2D COF powders that lack processability, impeding their integration into devices, particularly within membrane technologies reliant upon thin films. Herein, we report the novel on‐water surface synthesis of vinylene‐linked cationic 2DPs films (V‐C2DP‐1 and V‐C2DP‐2) via Knoevenagel polycondensation, which serve as the anion‐selective electrode coating for highly‐reversible and durable zinc‐based dual‐ion batteries (ZDIBs). Model reactions and theoretical modeling revealed the enhanced reactivity and reversibility of the Knoevenagel reaction on the water surface. On this basis, we demonstrated the on‐water surface 2D polycondensation towards V‐C2DPs films that show large lateral size, tunable thickness, and high chemical stability. Representatively, V‐C2DP‐1 presents as a fully crystalline and face‐on oriented film with in‐plane lattice parameters of a=b≈43.3 Å. Profiting from its well‐defined cationic sites, oriented 1D channels, and stable frameworks, V‐C2DP‐1 film possesses superior bis(trifluoromethanesulfonyl)imide anion (TFSI)‐transport selectivity (transference, t_=0.85) for graphite cathode in high‐voltage ZDIBs, thus triggering additional TFSI‐intercalation stage and promoting its specific capacity (from ~83 to 124 mAh g−1) and cycling life (>1000 cycles, 95 % capacity retention).

Publisher

Wiley

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