专业的英文翻译

来源:百度知道 编辑:UC知道 时间:2024/06/28 17:49:59
Another useful method for investigating the kinetics of Li dif- fusion and phase transformation is potential-step chronoamper- ometry (PSCA), which was successfully used for understanding the charge–discharge behavior of graphite anodes [15,19].
In this paper, we made an effort to understand the effect of phase transformation on the reaction kinetics of LiFe0.9 Mg0.1 PO4 in two-phase regions by two different exper- imental techniques i.e. potential-step chronoamperometry and EIS with different potentiostatic signal amplitudes. The reason to select LiFe0.9 Mg0.1 PO4 material is because it shows both a high Li-ion diffusion ability and an electronic conductivity [8], and the phase transformation during the charge and discharge may be a controlling step for its rate capability.

Another useful method for investigating the kinetics of Li dif- fusion and phase transformation is potential-step chronoamper- ometry (PSCA), which was successfully used for understanding the charge–discharge behavior of graphite anodes [15,19].
用于研究锂扩散和相变动力学的另一种有用的方法是电位阶跃计时电流法(PSCA),他曾成功应用于了解石墨阳极的充放电行为【15,19】。
In this paper, we made an effort to understand the effect of phase transformation on the reaction kinetics of LiFe0.9 Mg0.1 PO4 in two-phase regions by two different exper- imental techniques i.e. potential-step chronoamperometry and EIS with different potentiostatic signal amplitudes. 在本文中,我们为了解相变对二相区中LiFe0.9 Mg0.1 PO4反应动力学的影响做了努力,其中采用了两种实验技术,即电位阶跃计时电流法和EIS法,以及不同的恒电位信号幅值。The reason to select LiFe0.9 Mg0.1 PO4 material is because it shows both a high Li-ion diffusion ability and an electronic conductivity [8], and the phase transformation during the charge and discharge may be a controlling step for its rate capability.
选择LiFe0.9 Mg0