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Designing Binary Ru-Sn Oxides with Optimized Performances for the Air Electrode of Rechargeable Zinc-Air Batteries

机译:设计二元RU-SN氧化物,具有可充电锌空气电池的空气电极的优化性能

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摘要

Because of the sluggish kinetics of the oxygen evolution reaction (OER) and oxygen reduction reaction (ORR), binary ruthenium-tin oxides synthesized by a hydrothermal method with postannealing at 450 degrees C for 2 h are first proposed as bifunctional catalysts for these two reactions on the air electrode of rechargeable zinc-air batteries. The binary Ru-Sn oxides in various compositions show the typical oxide solid solution in the rutile phase. Among all binary Ru-Sn oxides, RuSn73 (70 atom % RuO2 and 30 atom % SnO2) and RuSn37 (30 atom % RuO2 and 70 atom % SnO2) show the highest catalytic activities toward the OER and ORR, respectively. Consequently, a novel design of the air electrode consisting of a RuSn37 coating on the carbon paper and a Ti mesh coated with RuSn73 (denoted RuSn(37-Cl73-Ti)) is proposed to possess the optimal charge-discharge performances. A unique cell employing such an air electrode has been demonstrated to exhibit a very low charge-discharge cell voltage gap of 0.75 V at 10 mA cm(-2). This cell with a peak power density of 120 mW cm(-2) at the current density of 235 mA cm(-2) also shows an outstanding charge-discharge stability over 80 h. This cell also exhibits an exceptionally high charge rate capability at 150 mA cm(-2) with a low charging voltage of 2.0 V.
机译:由于氧进化反应的缓慢动力学(oer)和氧还原反应(ORR),首先提出通过在450℃下进行的水热法合成的二元钌 - 氧化锡2小时,这两个反应的双官能催化剂在可充电锌空气电池的空气电极上。各种组合物中的二元Ru-Sn氧化物显示金红石相中的典型氧化物固溶体。在所有二元Ru-Sn氧化物中,RUSN73(70原子%RUO 2和30原子%SNO2)和RUSN37(30原子%RUO2和70原子%SNO2)分别显示出oer和ORR的最高催化活性。因此,提出了一种由碳纸上的Rusn37涂层组成的空气电极的新颖设计和用RUSN73涂覆的Ti网(表示Rusn(37-C173-Ti))以具有最佳的充放电性能。已经证明使用这种空气电极的独特电池在10mA cm(-2)下表现出0.75V的非常低的电荷 - 放电电池电压间隙。该电池在电流密度为235mA cm(-2)的电流密度为120mW cm(-2),也显示出超过80h的出色的充放电稳定性。该电池还在150mA cm(-2)中表现出具有极高的电荷率能力,其充电电压为2.0V。

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