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首页> 外文期刊>ACS nano >A Fast Charge/Discharge and Wide-Ternperature Battery with a Germanium Oxide Layer on a Ti3C2 MXene Matrix as Anode
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A Fast Charge/Discharge and Wide-Ternperature Battery with a Germanium Oxide Layer on a Ti3C2 MXene Matrix as Anode

机译:快速充电/放电和宽卧式电池,氧化锗层在Ti3C2 mxene基质上作为阳极

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摘要

A rapid charge/discharge secondary battery is critical in portable electronic devices and electric vehicles. Germanium, due to the metallic property and facile alloying reaction with lithium, displays great potential in fast charge/discharge batteries in contrast to other intercalation batteries. In order to accommodate the over 300% volume change, a 2D hybrid composite electrode consisting of a homogeneous, amorphous GeOx(x =1.57) layer bonded on Ti3C2 MXenes was successfully developed via an industry available method. The expanded interlayer space inside the MXene matrix accommodates the restricted isotropic expansion from the stress-released, ultrathin GO(x) layer. Owing to the improved e(-)/Li+ conductivity from both metallic reduced Ge and MXene, the battery showed an excellent charge/discharge performance as fast as 3 min (20.0 C). A high-capacity retention of similar to 1048.1 mAh/g along with a Coulombic efficiency (CE) of 99.8% at 0.5 C after 500 cycles was achieved. Under 1.0 C, the capacity was still up to 929.6 mAh/g with a CE of 99.6% (<0.02% capacity decay per cycle) after ultralong (1000) cycling. An almost doubled capacity of 671.6 mAh/g compared to graphite (372 mAh/g at 0.1 C) under 5.0 C and a capacity of 300.5 mAh/g under 10.0 C after 1000 cycles were respectively received. Under cold conditions, due to the low interface energy barrier, an efficient alloying reaction happens which prevents the Li plating on the electrode surface. High capacities of 631.6, 333.9, and 841.7 mAh/g under -20, -40, and 60 degrees C after 100 cycles demonstrate a wide temperature tolerance of the battery. In addition, a full-cell battery paired with LiNi0.8Mn0.1Co0.1O2 (NMC811) displayed a high capacity of 536.8 mAh/g after 200 cycles. A high capacity retention of a full pouch cell after 50 cycles was also obtained. The superhigh rate capability along with long cycling, wide temperature range, scalable production, and relatively low cost of this hybrid composite display promising potential in specific energy storage applications.
机译:快速充电/放电二次电池在便携式电子设备和电动车辆中至关重要。锗,由于金属性能和与锂的适当合金化反应,与其他插入电池相比,在快速充电/放电电池中显示出很大的潜力。为了容纳超过300%的体积变化,通过工业可用方法成功地开发了由均匀的无定形Geox(X = 1.57)层组成的2D杂化复合电极。 MXENE基质内的扩展层间空间可容纳来自应力释放的超薄(X)层的限制各向同性膨胀。由于来自金属减少GE和MXENE的改善的E( - )/ Li +电导率,电池显示出优异的充电/放电性能,尽快至3分钟(20.0℃)。达到500次循环后,高容量保持与1048.1mAh / g类似于1048.1mAh / g的库仑效率为99.8%。在1.0℃下,超龙(1000)循环后,该容量仍然高达929.6mAh / g,Ce为99.6%(每循环衰减0.02%衰减)。在5.0℃下与石墨(372mAh / g的372mAh / g)相比,在5.0℃下的电容和300.5mAh / g的容量分别接受了几乎加倍的容量。在寒冷的条件下,由于界面能量屏障低,有效的合金化反应发生,这防止了Li镀在电极表面上。在100次循环之后,高容量为631.6,333.9和841.7mAh / g在-20,40和60℃下的841.7mah / g展示了电池的宽温差。此外,与LINI0.8MN0.1CO0.1O2(NMC811)配对的全电池电池在200次循环后显示出536.8mAh / g的高容量。还获得了50个循环后的全袋细胞的高容量保留。超高速速率能力以及长循环,宽温度范围,可扩展的生产以及该混合复合材料的相对较低的成本,在特定的能量存储应用中具有可能的潜力。

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