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通过迈克尔加成反应合成的四臂聚合物的离子液体基电解质中的无缺陷网络形成和溶胀行为。

Defect-free network formation and swelling behavior in ionic liquid-based electrolytes of tetra-arm polymers synthesized using a Michael addition reaction.

作者信息

Yoshitake Mari, Kamiyama Yuji, Nishi Kengo, Yoshimoto Nobuko, Morita Masayuki, Sakai Takamasa, Fujii Kenta

机构信息

Graduate School of Sciences and Technology for Innovation, Yamaguchi University, 2-16-1 Tokiwadai, Ube, Yamaguchi, 755-8611, Japan.

出版信息

Phys Chem Chem Phys. 2017 Nov 15;19(44):29984-29990. doi: 10.1039/c7cp06126a.

Abstract

The gelation mechanism of tetra-arm poly(ethylene glycol) (TetraPEG) prepolymers via a Michael addition reaction was investigated from the viewpoint of chemical reaction kinetics. The polymer network was formed by mixing two different TetraPEGs functionalized with maleimide and thiol terminal groups (TetraPEG-MA and TetraPEG-SH) in aqueous solutions, and the gelation rate was strongly dependent on the solution pH. We found that the gelation reaction can be a second-order reaction when the acid-base equilibrium of the terminal SH groups (-SH ⇆ -S + H) was taken into account, resulting in a quantitative estimation of the rate constant (k) in the current polymer solution system. Based on the k value, the network connectivity (p), which corresponds to efficiency at the linking point, was evaluated to be p > 95% at the end of the reaction; thus, the resulting TetraPEG hydrogels have a homogeneous polymer network without network defects. We used the TetraPEG network as a polymer matrix in a lithium-ion battery gel electrolyte: dried TetraPEG gels were swollen with ionic liquid-based electrolytes containing Li salts to prepare TetraPEG ion gel electrolytes. Swelling behaviors of the TetraPEG network were characterized from the swelling rate and the equilibrium swelling ratio, and we found that these swelling behaviors were significantly affected by the Li-ion component. We concluded that an intermolecular interaction between Li-ions and the polymer (Li-ion coordination with the O atoms within the PEG chains) plays a key role in the fundamental physical properties of the gel electrolyte.

摘要

从化学反应动力学的角度研究了四臂聚乙二醇(TetraPEG)预聚物通过迈克尔加成反应的凝胶化机理。通过在水溶液中混合两种分别用马来酰亚胺和硫醇端基官能化的不同TetraPEG(TetraPEG-MA和TetraPEG-SH)形成聚合物网络,凝胶化速率强烈依赖于溶液的pH值。我们发现,当考虑端基SH基团的酸碱平衡(-SH ⇆ -S + H)时,凝胶化反应可以是二级反应,从而可以对当前聚合物溶液体系中的速率常数(k)进行定量估算。基于k值,评估反应结束时对应于连接点效率的网络连通性(p)为p > 95%;因此,所得的TetraPEG水凝胶具有均匀的聚合物网络,没有网络缺陷。我们将TetraPEG网络用作锂离子电池凝胶电解质中的聚合物基质:将干燥的TetraPEG凝胶用含锂盐的离子液体基电解质溶胀,以制备TetraPEG离子凝胶电解质。从溶胀速率和平衡溶胀比表征了TetraPEG网络的溶胀行为,我们发现这些溶胀行为受到锂离子组分的显著影响。我们得出结论,锂离子与聚合物之间的分子间相互作用(锂离子与PEG链内的O原子配位)在凝胶电解质的基本物理性质中起关键作用。

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