Martinelli Anna, Matic Aleksandar, Jacobsson Per, Börjesson Lars, Fernicola Alessandra, Panero Stefania, Scrosati Bruno, Ohno Hiroyuki
Department of Applied Physics, Chalmers University of Technology, 412 96 Göteborg, Sweden.
J Phys Chem B. 2007 Nov 1;111(43):12462-7. doi: 10.1021/jp0735029. Epub 2007 Oct 10.
We have investigated the physical properties of proton conducting polymer membranes based on a protic ionic liquid (IL). Properties such as ionic conductivity, melting point of the polymer phase, and glass transition temperature of the liquid phase are studied as a function of IL/polymer ratio and temperature. We observe an increased thermomechanical stability of the membrane with increasing polymer content. However, there is a concomitant decrease in the conductivity with increasing polymer content. This decrease is larger than what can be expected from the dilution of the conducting IL by the insulating polymer matrix. The origin of this decrease can be caused both by the morphology of the membrane and by interactions between the polymer matrix and the ionic liquid. We find a change in the glass transition temperature and in the temperature dependence of the conductivity with increasing polymer content. Both effects can be related to the physical confinement of the IL in the polymer membrane.
我们研究了基于质子离子液体(IL)的质子传导聚合物膜的物理性质。研究了诸如离子电导率、聚合物相熔点和液相玻璃化转变温度等性质随IL/聚合物比例和温度的变化。我们观察到随着聚合物含量增加,膜的热机械稳定性提高。然而,随着聚合物含量增加,电导率随之降低。这种降低幅度大于绝缘聚合物基体对导电IL稀释所预期的幅度。这种降低的根源可能是膜的形态以及聚合物基体与离子液体之间的相互作用。我们发现随着聚合物含量增加,玻璃化转变温度以及电导率的温度依赖性发生了变化。这两种效应都可能与IL在聚合物膜中的物理限制有关。