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Unique Co-Catalytic Behavior of Protic Ionic Liquids as Multifunctional Electrolytes for Water Splitting

机译:不同液体液体作为水分裂多功能电解质的独特催化性能

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摘要

Hydrogen production from water splitting holds great promise for solving today’s energy crisis but it is challenging to have high efficiency and low cost. For the first time, a protic ionic liquid (PIL), diethylammonium formate (DEAF) was used as a multifunctional electrolyte in water splitting, demonstrating a unique role of co‐catalyst for the hydrogen evolution reaction (HER) with the highest current density (21 mA cm−2 at −0.5 V) and the most positive onset potential (−0.002 V) in comparison to aprotic ILs and commonly used inorganic salts. Moreover, the concentration of PIL and temperature of electrolyte solution were optimized. The possible mechanism for the multifunctionality and high performance for water splitting using this PIL was proposed using X‐ray photoelectron spectroscopy (XPS). The high performance for HER, simplicity and low cost for synthesis, and unique properties make DEAF highly promising as an electrolyte toward water splitting.DEAFening: For the first time, a protic ionic liquid, diethylammonium format, is used as a multifunctional electrolyte in a water‐splitting cell, demonstrating a unique role as co‐catalyst.
机译:水分裂的氢气生产对于解决当今的能源危机而言,这是一个很好的希望,但具有较高的效率和低成本是挑战性的。首先,使用质子离子液体(pil),二乙基甲酸酯(聋)用作水分裂中的多功能电解质,展示了氢化反应(她)具有最高电流密度的助催化剂的独特作用( 21 mA cm-2在-0.5V)和最阳性发作潜力(-0.002 v)与非质子ILS和常用的无机盐相比。此外,优化了电解质溶液的Pil和温度的浓度。采用X射线光电子光谱(XPS)提出了使用该PIL的多功能和水分裂高性能的可能机制。对她的简单性和合成成本的高性能和独特的性质以及独特的性质使聋人具有对水分裂的电解质的聋人高度承诺。致舌:首次,使用质子离子液体,二乙基铵形式,用作a中的多功能电解质水分解细胞,展示了作为辅助催化剂的独特作用。

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