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REDOX TRANSISTOR BATTERY-AN EMERGING ARCHITECTURE FOR ELECTROCHEMICAL ENERGY STORAGE

机译:氧化还原晶体管电池-一种用于电化学能源存储的新兴架构

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In this article, it is proposed that a membrane with tunable ionic conductivity can be used as a separator between the electrodes of a supercapacitor to both allow normal charge/discharge operation and minimize self-discharge when not in use. It is shown that the redox active conducting polymer PPy(DBS), when polymerized on a porous substrate, will span across the pores of the membrane. PPy(DBS) is also shown to function as an ionic redox transistor, in which the transmembrane ionic conductivity of the polymer membrane is a function of its redox state. The PPy(DBS) ionic redox transistor is applied between the electrodes in a supercapacitor as a smart membrane separator. It is demonstrated that the maximum tunable ionic conductivity of the smart membrane separator is comparable in operation to an industry standard separator at maximum ionic conductivity, with a self-discharge leakage current of ~0.12mA/cm~2 at 1V. The minimum tunable ionic conductivity of the smart membrane separator is shown to decrease the supercapacitor self-discharge when not in use by a factor of 10, with a leakage current of 0.012mA/cm~2 at 1V. This range of tunable ionic conductivity could lead to the emergence of redox transistor batteries with high energy density and low self-discharge for short and long-term storage applications.
机译:在本文中,提出具有可调离子电导率的膜可以用作超级电容器电极之间的隔板,既可以正常充电/放电操作,又可以在不使用时最大程度地减少自放电。已经表明,当氧化还原活性导电聚合物PPy(DBS)在多孔基材上聚合时,将跨越膜的孔。 PPy(DBS)还显示出作为离子氧化还原晶体管的功能,其中聚合物膜的跨膜离子电导率是其氧化还原状态的函数。将PPy(DBS)离子氧化还原晶体管施加在超级电容器中的电极之间,作为智能膜分离器。结果表明,在最大离子电导率下,智能膜分离器的最大可调离子电导率在操作上可与工业标准隔膜媲美,在1V时自放电电流为〜0.12mA / cm〜2。研究表明,智能膜分离器的最小可调离子电导率可将超级电容器不使用时的自放电降低10倍,在1V时的泄漏电流为0.012mA / cm〜2。可调的离子电导率范围可能导致出现高能量密度和低自放电的氧化还原晶体管电池,用于短期和长期存储应用。

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