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Actuator based on sulfonated comb copolymer of poly (ethylene-co- vinyl alcohol) grafted by poly (ethylene glycol)

机译:基于聚乙二醇接枝的聚乙烯-乙烯-乙烯醇磺化梳状共聚物的执行器

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Comb copolymer consisting of poly (ethylene-co-vinyl alcohol) (EVAL) as backbone and poly (ethylene glycol) (PEG) as side chains (EVAL-g-PEG) has been synthesized, then it was sulfonated by 1,3-propane sultone to get the final ionomer (EVAL-g-SPEG), and ionic polymer-metal composite (IPMC) based on EVAL-g-SPEG was prepared through electroless deposition of platinum onto the surfaces of EVAL-g-SPEG membrane. The graft copolymers were characterized with respect to molecular weight using gel permeation chromatography (GPC) and composition using ~1H-NMR. The results showed that the No. of PEG graft of the side chains is n=1, 2 and others. Thermal properties were examined by DSC and TG. The melt temperature (T_m) and glass transition temperature (T_g) of the comb copolymer increase with the increasing length and the number of the side chains. Moreover, the deformation performance of IPMC material was tested and its results show that the starting response voltage of IPMC actuator decreases with the increasing IEC value. On the other hand, the starting response voltage increases with the decreased side chain length. The IPMC with n=2 side chain length of PEG has the maximum tip displacement, and the maximum tip displacement of IPMC membrane generally decreases with the side chain length of EVAL-g-SPEG. This feature may be the reflection of two opposite effects, namely the decreasing ion densities and increasing water sorption of the membrane.
机译:合成了以聚(乙烯-共-乙烯醇)(EVAL)为主链和聚(乙二醇)(PEG)为侧链的梳状共聚物(EVAL-g-PEG),然后将其磺化1,3-丙烷磺酸内酯得到最终的离聚物(EVAL-g-SPEG),通过在EVAL-g-SPEG膜表面化学沉积铂,制备了基于EVAL-g-SPEG的离子聚合物-金属复合材料(IPMC)。使用凝胶渗透色谱法(GPC)表征接枝共聚物的分子量,并使用〜1H-NMR表征组成。结果表明,侧链的PEG接枝数为n = 1、2等。通过DSC和TG检查热性能。梳状共聚物的熔融温度(T_m)和玻璃化转变温度(T_g)随着长度和侧链数目的增加而增加。此外,对IPMC材料的变形性能进行了测试,结果表明IPMC执行器的启动响应电压随着IEC值的增加而减小。另一方面,起动响应电压随着侧链长度的减小而增加。 PEG的n = 2侧链长度的IPMC具有最大尖端位移,而IPMC膜的最大尖端位移通常随着EVAL-g-SPEG的侧链长度而减小。该特征可以是两个相反作用的反映,即降低的离子密度和增加的膜的水吸附。

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