首页> 外文会议>International Conference on Mechanical Engineering, Materials Science and Civil Engineering >Checkerboard deposition of lithium manganese oxide spinel (LiMn2O4) by RF magnetron sputtering on a stainless steel in all-solid-state thin film battery
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Checkerboard deposition of lithium manganese oxide spinel (LiMn2O4) by RF magnetron sputtering on a stainless steel in all-solid-state thin film battery

机译:锂锰氧化物尖晶石(LiMn2O4)的棋盘沉积在全固态薄膜电池中不锈钢上的RF磁控溅射

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All-solid-state thin film lithium batteries (TFLBs) are the most competitive low-power sources to be applied in various kinds of micro-electro-mechanical systems and have been draw a lot of attention in academic research. In this paper, the checkerboard deposition of all-solid-state TFLB was composed of thin film lithium metal anode, lithium phosphorus oxynitride (LiPON) solid electrolyte, and checkerboard deposition of lithium manganese oxide spinel (LiMn2O4) cathode. The LiPON and LiMn2O4 were deposited by a radio frequency magnetron sputtering system, and the lithium metal was deposited by a thermal evaporation coater. The electrochemical characterization of this lithium battery showed the first discharge capacity of 107.8 uAh and the capacity retention was achieved 95.5% after 150 charge-discharge cycles between 4.3V and 3V at a current density of 11 μA/cm~2 (0.5C). Obviously, the checkerboard of thin film increased the charge exchange rate; also this lithium battery exhibited high C-rate performance, with better capacity retention of 82% at 220 μA/cm~2 (10C).
机译:全固态薄膜锂电池(TFLB)是最具竞争力的低电源,适用于各种微电机械系统,并在学术研究中引起了很多关注。在本文中,全固态TFLB的棋盘沉积由薄膜锂金属阳极,磷磷锂(Lipon)固体电解质和锂锰氧化物尖晶石(Limn2O4)阴极的棋角沉积。所述的LiPON和锰酸锂通过射频磁控溅射系统沉积,并且该锂金属通过热蒸发涂机沉积。该锂电池的电化学表征显示了107.8UAH的第一放电容量,并且在150个电荷 - 放电循环在4.3V和3V的电流密度为11μA/ cm〜2(0.5℃)后,实现了95.5%的容量保持。显然,薄膜的棋盘增加了电荷汇率;此锂电池还表现出高C速率性能,在220μA/ cm〜2(10℃)下具有更好的容量保持82%。

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