Effect of Poly(ethylene glycol) Crystallization on Ionic Conduction and Dielectric Response of Imidazolium-Based Copolyester Ionomers

被引:13
作者
Lee, Minjae [1 ]
Kwon, Yong Ku [2 ]
Kim, Jehan [3 ]
Choi, U. Hyeok [4 ]
机构
[1] Kunsan Natl Univ, Dept Chem, Gunsan 55150, South Korea
[2] Inha Univ, Dept Polymer Sci & Engn, Incheon 22212, South Korea
[3] Pohang Univ Sci & Technol, Pohang Accelerator Lab, Pohang 37673, South Korea
[4] Pukyong Natl Univ, Dept Polymer Engn, Busan 48513, South Korea
基金
新加坡国家研究基金会;
关键词
POLYMER ELECTROLYTES; MOLECULAR MOBILITY; LIQUIDS; DYNAMICS; PLASTICIZER; RELAXATION;
D O I
10.1021/acs.macromol.8b02332
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
A molecular-level understanding of ion and polymer dynamics in imidazoliumpoly(ethylene glycol) (PEG) copolyester ionomers having different counteranions [PF6- vs (CF3SO2)(2)N-], alkylene spacer lengths [(CH2)(6) vs (CH2)(11)], and PEG segment lengths [(CH2CH2O)(22) vs (CH2CH2O)(44)] is investigated for the development of fast single-ion conducting materials, using dielectric relaxation spectroscopy and X-ray scattering. The variations of the counteranion size and PEG segment length lead to substantial changes in simultaneously conducting counteranion content (p), their mobility (mu), ion (alpha(2)), and segmental (alpha) relaxations, with consequences for ion transport. However, there is no significant influence of the alkylene spacer length on the counteranion conductivity (sigma(DC)). Imidazolium-PEG copolyester ionomers with larger (CF3SO2)(2)N- (= Tf2N) counterions show higher p with lower activation energy and higher mu with lower Vogel temperature as well as fast alpha(2) and alpha motions with lower glass transition temperature, resulting in higher sigma(DC). For the PEG segment length, the longer PEG segment leads to a copolyester crystallization, reflected by the observation of distinct X-ray diffraction peaks and a Maxwell-Wagner-Sillars interfacial polarization, bringing out an abrupt decrease in sigma(DC) at the phase transition. On the other hand, imidazolium-PEG copolyester with the shorter PEG segment has higher conducting counteranion fraction (p/p(0)), mu, and static dielectric constant (epsilon(s)) compared to the similar polyester analogue with no PEG segment. Incorporation of the PEG segments with an optimized length into the main chain polymer plays an important role in directly boosting counteranion conductivity of the single-ion conducting copolyester ionomers.
引用
收藏
页码:2314 / 2328
页数:15
相关论文
共 50 条
[41]   Effect of plasticizer on the ion-conductive and dielectric behavior of poly(ethylene carbonate)-based Li electrolytes [J].
Kobayashi, Kaori ;
Pagot, Gioele ;
Vezzu, Keti ;
Bertasi, Federico ;
Di Noto, Vito ;
Tominaga, Yoichi .
POLYMER JOURNAL, 2021, 53 (01) :149-155
[42]   Effect of orientation and crystallization on dielectric and mechanical relaxations in uniaxially stretched poly(ethylene naphthalene 2,6 dicarboxylate)(PEN) films [J].
Hakme, C. ;
Stevenson, I. ;
David, L. ;
Seytre, G. ;
Boiteux, G. .
JOURNAL OF NON-CRYSTALLINE SOLIDS, 2006, 352 (42-49) :4746-4752
[43]   Investigating the Correlation of Segmental Dynamics, Free Volume Characteristics, and Ionic Conductivity in Poly(ethylene oxide)-Based Electrolyte: A Broadband Dielectric and Positron Annihilation Spectroscopy Study [J].
Utpalla, P. ;
Sharma, S. K. ;
Sudarshan, K. ;
Deshpande, S. K. ;
Sahu, M. ;
Pujari, P. K. .
JOURNAL OF PHYSICAL CHEMISTRY C, 2020, 124 (08) :4489-4501
[44]   Ionic liquid impregnated lithium ion conductive solid electrolytes based on poly(acetyl ethylene glycol methacrylate-co-methyl acrylate) [J].
Choi, Shin Woo ;
Luu, Dinh Xuan ;
Le Mong, Anh ;
Kwon, Byungsan ;
Kim, Dukjoon .
SOLID STATE IONICS, 2015, 279 :18-24
[45]   Solid polymer electrolytes I, preparation, characterization, and ionic conductivity of gelled polymer electrolytes based on novel crosslinked siloxane/poly(ethylene glycol) polymers [J].
Kuo, PL ;
Hou, SS ;
Lin, CY ;
Chen, CC ;
Wen, TC .
JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2004, 42 (09) :2051-2059
[46]   Suppressing Ionic-to-Electronic Conduction Transition on Cathode Interface Enables 4.4 V Poly(ethylene oxide)-Based All-Solid-State Batteries [J].
Kong, Zi-Xiang ;
Xiong, Zhe ;
Wu, Jian-Fang ;
Jin, Jun ;
Lin, Yuxiao ;
Li, Yunsong ;
Liu, Jilei .
ACS ENERGY LETTERS, 2024, 10 (01) :287-295
[47]   A Flow Cytometry Evaluation of Poly (1-vinyl-3-alkyl imidazolium) Based Ionic Liquid's In Vitro Effect on Various Cellular Components of Blood [J].
Panda, Itishree ;
Bhola, Rajesh Kumar ;
Samal, Sangram Keshari ;
Pradhan, Sanghamitra .
CHEMISTRYSELECT, 2024, 9 (04)
[48]   Enhanced temperature effect of electrorheological fluid based on cross-linked poly(ionic liquid) particles: rheological and dielectric relaxation studies [J].
Liu, Yang ;
Yuan, Jinhua ;
Dong, Yuezhen ;
Zhao, Xiaopeng ;
Yin, Jianbo .
SOFT MATTER, 2017, 13 (05) :1027-1039
[49]   Dielectric properties of sulfonated poly(ether ether ketone) (SPEEK) electrolytes with 1-ethyl-3-methylimidazolium tetrafluoroborate salt: Ionic liquid-based conduction pathways [J].
Yilmazoglu, Mesut ;
Bayiroglu, Fatih ;
Erdemi, Hamit ;
Abaci, Ufuk ;
Guney, H. Yuksel .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2021, 611
[50]   Structural Investigation of Chloride Ion-Containing Acrylate-Based Imidazolium Poly(Ionic Liquid) Homopolymers and Crosslinked Networks: Effect of Alkyl Spacer and N-Alkyl Substituents [J].
Al-Hussein, Mahmoud ;
Ehrlich, Lisa ;
Pospiech, Doris ;
Uhlmann, Petra .
NANOMATERIALS, 2025, 15 (01)