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Electrochemical Investigation of Phenethylammonium Bismuth Iodide as Anode in Aqueous Zn

机译:磷酸磷铵铋作为阳极水溶液的电化学研究

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摘要

Despite the high potential impact of aqueous battery systems, fundamental characteristics such as cost, safety, and stability make them less feasible for large-scale energy storage systems. One of the main barriers encountered in the commercialization of aqueous batteries is the development of large-scale electrodes with high reversibility, high rate capability, and extended cycle stability at low operational and maintenance costs. To overcome some of these issues, the current research work is focused on a new class of material based on phenethylammonium bismuth iodide on fluorine doped SnO2-precoated glass substrate via aerosol-assisted chemical vapor deposition, a technology that is industrially competitive. The anode materials were electrochemically investigated in Zn2+ aqueous electrolytes as a proof of concept, which presented a specific capacity of 220 mAh g−1 at 0.4 A g−1 with excellent stability after 50 scans and capacity retention of almost 100%.
机译:尽管水电池系统的潜在影响很高,但诸如成本,安全性和稳定性等基本特性使它们对大型能量存储系统不太可行。在含水电池商业化中遇到的主要障碍之一是在低运行和维护成本下开发具有高可逆性,高速率和延长循环稳定性的大型电极。为了克服这些问题的一些问题,目前的研究工作主要集中在基于氟掺杂的SnO2-浸润的玻璃基板上基于苯甲基铋碘化物的新类材料,通过气溶胶辅助化学气相沉积,这是一种工业竞争力的技术。在Zn2 +水性电解质中电化学研究了阳极材料,作为概念的证据,其在0.4Ag-1的特定容量下呈现,在50次扫描后具有优异的稳定性和近100%的容量稳定性。

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