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首页> 外文期刊>Electrochimica Acta >Mesoporous ultrafine Ta2O5 nanoparticle with abundant oxygen vacancies as a novel and efficient catalyst for non-aqueous Li-O-2 batteries
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Mesoporous ultrafine Ta2O5 nanoparticle with abundant oxygen vacancies as a novel and efficient catalyst for non-aqueous Li-O-2 batteries

机译:中孔超细Ta2O5纳米粒子,具有丰富的氧空位,作为非水性Li-O-2电池的新型和有效催化剂

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Non-aqueous lithium-oxygen batteries have been regarded as one of the most promising alternative devices for electric vehicles owing to their ultrahigh theoretical energy densities. However, the sluggish reaction kinetics associated with Li2O2 deposition and oxidization during discharge and charge have severely limited the development of this type of battery. Here, mesoporous ultrafine Ta2O5 nanoparticles with high specific surface area and abundant oxygen vacancies are synthesized and applied to a nonaqueous Li-O-2 battery. With this novel catalyst, the non-aqueous Li-O-2 battery is capable of delivering a much higher reversible capacity of similar to 13000 mAh g(-1) at a current density of 500 mA g(-1) with a lower discharge and charge over-potential of similar to 0.18 V and similar to 1.01 V, respectively. In addition, the cycling number of the battery increases up to 100 with a coulombic efficiency of 100% at the current density of 500 mA g(-1), whereas the battery without this catalyst suffers from severe decay after only 40 cycles. Moreover, when the current density increases from 500 to 1000 mA g(-1), the battery still can be operated for 76 times with no degradation, indicating its excellent rate capability and stability. (C) 2018 Elsevier Ltd. All rights reserved.
机译:由于其超高理论能量密度,非水锂 - 氧气电池被认为是电动车辆最有前途的替代装置之一。然而,与放电和电荷期间与Li2O2沉积和氧化相关的缓慢的反应动力学严重限制了这种电池的发展。这里,合成具有高比表面积和丰富氧空位的中孔超细TA2O5纳米颗粒,并施加到非水锂o-2电池中。利用这种新型催化剂,非水性Li-O-2电池能够以较低的500mA G(-1)的电流密度以较低的500mA g(-1)的相似的可逆容量。并分别充电超过0.18 V且类似于1.01 v。另外,电池的循环次数高达100,在500mA G(-1)的电流密度下的库仑效率为100%,而没有这种催化剂的电池仅在40次循环后遭受严重衰减。此外,当电流密度从500到1000 mA g(-1)增加时,电池仍然可以操作76次,没有降低,表明其优异的速率能力和稳定性。 (c)2018年elestvier有限公司保留所有权利。

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