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Synthesis and investigation of imidazolium functionalized poly(arylene ether sulfone)s as anion exchange membranes for all-vanadium redox flow batteries

机译:咪唑鎓官能化聚芳撑醚砜作为全钒氧化还原液流电池阴离子交换膜的合成与研究

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A serials of imidazolium functionalized poly(arylene ether sulfone) as anion exchange membranes (AEMs) for all-vanadium redox flow battery (VRB) application are synthesized successfully in this study. The AEMs obtained with different ionization levels, Im-PAES-0.5/0.7/1.1 (0.5/0.7/1.1 represents the different degrees of bromination, respectively) membranes are intensively characterized. Compared with commercial Nafion 117 membrane, the vanadium ion permeation values of AEMs are lower while their chemical stability in VO2+ are comparable. The ionic conductivities, vanadium ion permeability, stability of the membranes and their performance in VRB cells are greatly affected by ionic exchange capacity (IEC). In order to balance these important performance factors, the Im-PAES-0.7 membrane with a moderate IEC of 2.01 meq g(-1) exhibits good stability, high ionic conductivity and low vanadium ion permeation, resulting in high voltage efficiencies (up to 87.5%), high coulombic efficiencies (up to 96.1%), as well as high energy efficiency. The VRB cell with the Im-PAES-0.7 membrane achieves comparable to or even slightly higher energy efficiency values (up to 81.7%) than those of Nafion 117 membranes (up to 78.9%) in the current density range of 60-120 mA cm(-2). During 40 charge-discharge cycles at different current densities, the Im-PAES-0.7 anion exchange membrane exhibits a comparable short-term stability to Nafion 117 membrane.
机译:本研究成功合成了一系列咪唑鎓官能化的聚(亚芳基醚砜)作为阴离子交换膜(AEM),用于全钒氧化还原液流电池(VRB)。深入表征了具有不同电离水平Im-PAES-0.5 / 0.7 / 1.1(0.5 / 0.7 / 1.1分别代表不同的溴化程度)膜的AEM。与市售的Nafion 117膜相比,AEM的钒离子渗透值较低,而它们在VO2 +中的化学稳定性却相当。离子电导率,钒离子渗透性,膜的稳定性及其在VRB电池中的性能受离子交换容量(IEC)的影响很大。为了平衡这些重要的性能因素,适度IEC为2.01 meq g(-1)的Im-PAES-0.7膜表现出良好的稳定性,高离子电导率和低钒离子渗透性,从而导致高电压效率(高达87.5) %),高库仑效率(高达96.1%)以及高能源效率。在电流密度为60-120 mA cm的情况下,带有Im-PAES-0.7膜的VRB电池的能效值与Nafion 117膜的能量效率值(高达78.9%)相当甚至略高(高达81.7%)。 (-2)。在以不同电流密度进行的40个充放电循环中,Im-PAES-0.7阴离子交换膜表现出与Nafion 117膜相当的短期稳定性。

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