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Atomic Layer Deposited Molybdenum Nitride Thin Film: A Promising Anode Material for Li Ion Batteries

机译:原子层沉积氮化钼薄膜:锂离子电池的有希望的阳极材料

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Molybdenum nitride (MoN_x) thin films are deposited by atomic layer deposition (ALD) using molybdenum hexacarbonyl [Mo(CO)6] and ammonia [NH3] at varied temperatures. A relatively narrow ALD temperature window is observed. In situ quartz crystal microbalance (QCM) measurements reveal the self-limiting growth nature of the deposition that is further verified with ex situ spectroscopic ellipsometry and X-ray reflectivity (XRR) measurements. A saturated growth rate of 2 A/cycle at 170 °C is obtained. The deposition chemistry is studied by the in situ Fourier transform infrared spectroscopy (FTIR) that investigates the surface bound reactions during each half cycle. As deposited films are amorphous as observed from X-ray diffraction (XRD) and transmission electron microscopy electron diffraction (TEM ED) studies, which get converted to hexagonal-MoN upon annealing at 400 °C under NH3 atmosphere. As grown thin films are found to have notable potential as a carbon and binder free anode material in a Li ion battery. Under half-cell configuration, a stable discharge capacity of 700 mAh g~(-1) was achieved after 100 charge-discharge cycles, at a current density of 100 μA cm~(-2).
机译:使用六羰基钼[Mo(CO)6]和氨[NH3]在不同温度下通过原子层沉积(ALD)沉积氮化钼(MoN_x)薄膜。观察到相对窄的ALD温度窗口。原位石英晶体微天平(QCM)测量揭示了沉积物的自限生长性质,这已通过非原位光谱椭偏仪和X射线反射率(XRR)测量得到了进一步验证。在170°C下获得2 A /循环的饱和生长速率。沉积化学通过原位傅立叶变换红外光谱(FTIR)研究,该光谱研究每个半周期内的表面结合反应。如通过X射线衍射(XRD)和透射电子显微镜电子衍射(TEM ED)研究所观察到的,沉积的薄膜是非晶态的,当在NH3气氛下于400°C退火时,沉积的薄膜会转变为六方MoN。随着生长,发现薄膜具有作为锂离子电池中无碳和无粘合剂阳极材料的显着潜力。在半电池配置下,经过100次充放电循环后,在100μAcm〜(-2)的电流密度下可获得700 mAh g〜(-1)的稳定放电容量。

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