Block copolymer synthesis in ionic liquid via polymerisation-induced self-assembly: a convenient route to gel electrolytes

被引:5
作者
Maitland, Georgia L. [1 ]
Liu, Mingyu [1 ]
Neal, Thomas J. [2 ]
Hammerton, James [1 ]
Han, Yisong [3 ]
Worrall, Stephen D. [1 ]
Topham, Paul D. [1 ]
Derry, Matthew J. [1 ]
机构
[1] Aston Univ, Aston Adv Mat Res Ctr, Birmingham B4 7ET, England
[2] Univ Edinburgh, EaStCHEM Sch Chem, Joseph Black Bldg,David Brewster Rd, Edinburgh EH9 3FJ, Scotland
[3] Univ Warwick, Dept Phys, Coventry CV4 7AL, England
基金
英国工程与自然科学研究理事会;
关键词
RAFT DISPERSION POLYMERIZATION; SENSITIZED SOLAR-CELLS; TRIBLOCK COPOLYMER; IN-SITU; EMULSION POLYMERIZATION; RADICAL POLYMERIZATION; RATIONAL SYNTHESIS; NANO-OBJECTS; VESICLES; PISA;
D O I
10.1039/d3sc06717c
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We report for the first time a reversible addition-fragmentation chain transfer polymerisation-induced self-assembly (RAFT-PISA) formulation in ionic liquid (IL) that yields worm gels. A series of poly(2-hydroxyethyl methacrylate)-b-poly(benzyl methacrylate) (PHEMA-b-PBzMA) block copolymer nanoparticles were synthesised via RAFT dispersion polymerisation of benzyl methacrylate in the hydrophilic IL 1-ethyl-3-methyl imidazolium dicyanamide, [EMIM][DCA]. This RAFT-PISA formulation can be controlled to afford spherical, worm-like and vesicular nano-objects, with free-standing gels being obtained over a broad range of PBzMA core-forming degrees of polymerisation (DPs). High monomer conversions (>= 96%) were obtained within 2 hours for all PISA syntheses as determined by 1H NMR spectroscopy, and good control over molar mass was confirmed by gel permeation chromatography (GPC). Nanoparticle morphologies were identified using small-angle X-ray scattering (SAXS) and transmission electron microscopy (TEM), and further detailed characterisation was conducted to monitor rheological, electrochemical and thermal characteristics of the nanoparticle dispersions to assess their potential in future electronic applications. Most importantly, this new PISA formulation in IL facilitates the in situ formation of worm ionogel electrolyte materials at copolymer concentrations >4% w/w via efficient and convenient synthesis routes without the need for organic co-solvents or post-polymerisation processing/purification. Moreover, we demonstrate that the worm ionogels developed in this work exhibit comparable electrochemical properties and thermal stability to that of the IL alone, showcasing their potential as gel electrolytes.
引用
收藏
页码:4416 / 4426
页数:11
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