Influence of Polymer Backbone Fluorination on the Electrochemical Behavior of Single-Ion Conducting Multiblock Copolymer Electrolytes

被引:12
作者
Mayer, Alexander [1 ,2 ]
Nguyen, Huu-Dat [3 ,4 ]
Mariani, Alessandro [1 ,2 ]
Diemant, Thomas [1 ,2 ]
Lyonnard, Sandrine [5 ]
Iojoiu, Cristina [3 ,6 ]
Passerini, Stefano [1 ,2 ]
Bresser, Dominic [1 ,2 ]
机构
[1] Helmholtz Inst Ulm HIU, D-89081 Ulm, Germany
[2] Karlsruhe Inst Technol KIT, D-76021 Karlsruhe, Germany
[3] Univ Grenoble Alpes, Univ Savoie Mt Blanc, UMR5279, LEPMI,CNRS, F-38000 Grenoble, France
[4] Automot Cells Co ACC, R&D Ctr, Ave Aquitaine, F-33520 Brugge, France
[5] Univ Grenoble Alpes, SyMMES, IRIG, CNRS,CEA, F-38000 Grenoble, France
[6] Reseau Sur Stockage Electrochim Energie RS2E, CNRS FR3459, F-80039 Amiens, France
关键词
LITHIUM METAL ANODE; MOLECULAR-WEIGHT; BATTERIES; PERFORMANCE; CHALLENGES; TRANSPORT; DISORDER;
D O I
10.1021/acsmacrolett.2c00292
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The presence of fluorine, especially in the electrolyte, frequently has a beneficial effect on the performance of lithium batteries owing to, for instance, the stabilization of the interfaces and interphases with the positive and negative electrodes. However, the presence of fluorine is also associated with reduced recyclability and low biodegradability. Herein, we present a single-ion conducting multiblock copolymer electrolyte comprising a fluorine-free backbone and compare it with the fluorinated analogue reported earlier. Following a comprehensive physicochemical and electrochemical characterization of the copolymer with the fluorine-free backbone, the focus of the comparison with the fluorinated analogue was particularly on the electrochemical stability toward oxidation and reduction as well as the reactions occurring at the interface with the lithium-metal electrode. To deconvolute the impact of the fluorine in the ionic side chain and the copolymer backbone, suitable model compounds were identified and studied experimentally and theoretically. The results show that the absence of fluorine in the backbone has little impact on the basic electrochemical properties, such as the ionic conductivity, but severely affects the electrochemical stability and interfacial stability. The results highlight the need for a very careful design of the whole polymer for each desired application, essentially, just like for liquid electrolytes.
引用
收藏
页码:982 / 990
页数:9
相关论文
共 52 条
[1]   Lithium-ion batteries - Current state of the art and anticipated developments [J].
Armand, Michel ;
Axmann, Peter ;
Bresser, Dominic ;
Copley, Mark ;
Edstrom, Kristina ;
Ekberg, Christian ;
Guyomard, Dominique ;
Lestriez, Bernard ;
Novak, Petr ;
Petranikova, Martina ;
Porcher, Willy ;
Trabesinger, Sigita ;
Wohlfahrt-Mehrens, Margret ;
Zhang, Heng .
JOURNAL OF POWER SOURCES, 2020, 479
[2]   Perspectives for Polymer Electrolytes: A View from Fundamentals of Ionic Conductivity [J].
Bocharova, V. ;
Sokolov, A. P. .
MACROMOLECULES, 2020, 53 (11) :4141-4157
[3]   Does Cell Polarization Matter in Single-Ion Conducting Electrolytes? [J].
Borzutzki, Kristina ;
Nair, Jijeesh Ravi ;
Winter, Martin ;
Brunklaus, Gunther .
ACS APPLIED MATERIALS & INTERFACES, 2022, 14 (04) :5211-5222
[4]  
Bouchet R, 2013, NAT MATER, V12, P452, DOI [10.1038/NMAT3602, 10.1038/nmat3602]
[5]   Decoupling segmental relaxation and ionic conductivity for lithium-ion polymer electrolytes [J].
Bresser, Dominic ;
Lyonnard, Sandrine ;
Iojoiu, Cristina ;
Picard, Lionel ;
Passerini, Stefano .
MOLECULAR SYSTEMS DESIGN & ENGINEERING, 2019, 4 (04) :779-792
[6]   High-energy lithium batteries based on single-ion conducting polymer electrolytes and Li[Ni0.8Co0.1Mn0.1]O2 cathodes [J].
Chen, Zhen ;
Steinle, Dominik ;
Huu-Dat Nguyen ;
Kim, Jae-Kwang ;
Mayer, Alexander ;
Shi, Junli ;
Paillard, Elie ;
Iojoiu, Cristina ;
Passerini, Stefano ;
Bresser, Dominic .
NANO ENERGY, 2020, 77
[7]   Toward Safe Lithium Metal Anode in Rechargeable Batteries: A Review [J].
Cheng, Xin-Bing ;
Zhang, Rui ;
Zhao, Chen-Zi ;
Zhang, Qiang .
CHEMICAL REVIEWS, 2017, 117 (15) :10403-10473
[8]   Diffusion and migration in polymer electrolytes [J].
Choo, Youngwoo ;
Halat, David M. ;
Villaluenga, Irune ;
Timachova, Ksenia ;
Balsara, Nitash P. .
PROGRESS IN POLYMER SCIENCE, 2020, 103
[9]   Comparison of single-ion-conductor block-copolymer electrolytes with Polystyrene-TFSI and Polymethacrylate-TFSI structural blocks [J].
Devaux, Didier ;
Lienafa, Livie ;
Beaudoin, Emmanuel ;
Maria, Sebastien ;
Phan, Trang N. T. ;
Gigmes, Didier ;
Giroud, Emmanuelle ;
Davidson, Patrick ;
Bouchet, Renaud .
ELECTROCHIMICA ACTA, 2018, 269 :250-261
[10]   Polymer electrolytes: Present, past and future [J].
Di Noto, Vito ;
Lavina, Sandra ;
Giffin, Guinevere A. ;
Negro, Enrico ;
Scrosati, Bruno .
ELECTROCHIMICA ACTA, 2011, 57 :4-13