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Synthesis and Characterisation of Novel Additives for Use in the Hybrid ZnBr_2 Flow Battery

机译:用于混合ZnBr_2流电池的新型添加剂的合成与表征

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Zinc-bromine redox flow batteries (RFB) are energy storage devices capable of integrating with renewable generators and so improve energy management from these intermittent sources. However, this system is susceptible to self-discharge via the electrogenerated bromine transferring through the separator and reacting with the plated zinc. Here we examine the use of novel quaternary ammonium complexes to capture the electrogenerated bromine but keep it in the aqueous phase (as opposed to the immiscible phase formed with N-methyl-N-ethylpyrrolidinium, MEP). Electrochemical analysis indicates that these complexes do not impact on the electrode kinetics and exhibit similar physical properties as to the MEP. However, the latter still shows an enhanced ability to complex the bromine to higher polybromide states (i.e. Br_5~-).
机译:锌 - 溴氧化还原流量电池(RFB)是能够与可再生发电机集成的能量存储装置,从而改善这些间歇源的能量管理。然而,该系统易于通过通过分离器传递的电化溴传递并与镀锌反应来对其进行自放电。在这里,我们研究了新型季铵配合物的使用以捕获电化溴而是将其保持在水相中(与用N-甲基-N-乙基吡咯烷鎓,MEP形成的不混溶相。电化学分析表明这些配合物不会影响电极动力学并表现出与MEP类似的物理性质。然而,后者仍然表明将溴与高级溴化态态复制到溴化态的增强能力(即BR_5〜 - )。

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