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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Bronsted Acid-Base Ionic Liquids as Proton-Conducting Nonaqueous Electrolytes
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Bronsted Acid-Base Ionic Liquids as Proton-Conducting Nonaqueous Electrolytes

机译:布朗斯台德酸碱离子液体作为质子传导非水电解质

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A new series of Bronsted acid-base ionic liquids were derived from the controlled combination of a monoprotonic acid with an organic base under solvent-free conditions. Appropriate amounts of solid bis-(trifluoromethanesulfonyl)amide (HTFSI) and solid imidazole (Im) were mixed at various molar ratios to have compositions varying from an equimolar salt to HTFSI- to Im-rich conditions. The mixture at equivalent molar ratio formed a protic neutral salt with a melting point of 73 ℃, which was thermally stable at temperatures even above 300 ℃. The melting points of other compositions were lower than those of the equimolar salt and Im or HTFSI, giving eutectics between the equimolar salt and HTFSI or Im. Some of the compositions with certain molar ratios of Im and HTFSI were liquid at room temperature. For Im excess compositions, the conductivity was found to increase with increasing Im mole fraction, and the ~1H NMR chemical shift of the proton attached to the nitrogen atom of Im was shifted to a lower magnetic field. On the contrary, the conductivity decreased with increasing HTFSI mole fraction, and the ~1H NMR chemical shift of the proton attached to the TFSI imide anion also shifted to a higher magnetic field. Self-diffusion coefficients, measured by pulsed-gradient spin-echo NMR (PGSE-NMR) methods in Im- or HTFSI-rich compositions, indicated that fast proton exchange reactions between the protonated Im cation and Im take place in excess Im. The proton conduction follows a combination of Grotthuss- and vehicle-type mechanisms. Direct current polarization measurements were used for the confirmation of proton conduction in Im-rich compositions. Furthermore, reduction of molecular oxygen could be observed at the interface between a Pt electrode and these ionic liquids. This introduces the Bronsted acid-base ionic liquid system as a new candidate for proton conductor such as a fuel cell electrolyte to operate under anhydrous conditions and at elevated temperature.
机译:在无溶剂条件下,单质子酸与有机碱的受控组合衍生出一系列新的布朗斯台德酸碱离子液体。将适当量的固体双-(三氟甲磺酰基)酰胺(HTFSI)和固体咪唑(Im)以各种摩尔比混合,以使组成从等摩尔盐至HTFSI-至富含Im的条件变化。混合物以当量摩尔比形成质子性中性盐,熔点为73℃,即使在300℃以上的温度下也具有热稳定性。其他组合物的熔点低于等摩尔盐和Im或HTFSI的熔点,在等摩尔盐和HTFSI或Im之间产生共晶。具有一定摩尔比的Im和HTFSI的一些组合物在室温下为液体。对于过量的Im组合物,发现电导率随Im摩尔分数的增加而增加,并且附着在Im氮原子上的质子的〜1H NMR化学位移移至较低的磁场。相反,电导率随HTFSI摩尔分数的增加而降低,并且附着在TFSI酰亚胺阴离子上的质子的〜1H NMR化学位移也移至更高的磁场。在富Im或HTFSI的组合物中,通过脉冲梯度自旋回波NMR(PGSE-NMR)方法测量的自扩散系数表明,质子化的Im阳离子和Im之间发生的质子交换反应快,而Im过量。质子传导遵循格罗特斯式和车辆式机制的结合。直流极化测量用于确认富含Im的组合物中的质子传导。此外,可以在Pt电极和这些离子液体之间的界面处观察到分子氧的减少。这引入了布朗斯台德酸基离子液体系统,作为质子导体(例如燃料电池电解质)在无水条件和高温下运行的新候选者。

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