Zhu Wen, Liu Dongqiang, Gagnon Catherine, Gariépy Vincent, Trudeau Michel L, Vijh Ashok, Zaghib Karim
Center of Excellence in Transportation Electrification and Energy Storage Hydro Québec, 1800 Boulevard Lionel-Boulet, Varennes, QC J3X1S1, Canada.
Department of Mining and Materials Engineering, McGill University, 845 Sherbrooke Street West, Montréal, QC H3A0G4, Canada.
Materials (Basel). 2020 Aug 28;13(17):3810. doi: 10.3390/ma13173810.
In situ X-ray diffraction was employed to investigate the crystal structure changes in Cr/Si co-doped Li(Co,Fe)PO cathode material during a galvanostatic charge/discharge process at a slow rate of C/30. The evolution of the X-ray patterns revealed that the phase transformation between the Cr/Si-Li(Co,Fe)PO and Cr/Si-(Co,Fe)PO is a two-step process, which involves the formation of an intermediate compound of Cr/Si-Li(Co,Fe)PO upon the extraction of Li ions from the pristine phase. Different from the previously reported two biphasic transition steps, the phase transformation of the Cr/Si-Li(Co,Fe)PO followed a solid solution and a biphasic reaction pathway at different stages of the delithiation/lithiation process, respectively.
采用原位X射线衍射研究了Cr/Si共掺杂Li(Co,Fe)PO4正极材料在C/30的缓慢恒电流充放电过程中的晶体结构变化。X射线图谱的演变表明,Cr/Si-Li(Co,Fe)PO4与Cr/Si-(Co,Fe)PO4之间的相变是一个两步过程,该过程涉及从原始相中提取锂离子时形成Cr/Si-Li(Co,Fe)PO4的中间化合物。与先前报道的两个双相转变步骤不同,Cr/Si-Li(Co,Fe)PO4的相变在脱锂/锂化过程的不同阶段分别遵循固溶体和双相反应途径。