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    题名 作者 年代 出处 被引量
1氟掺杂改性LiMn_(0.5)Fe_(0.5)PO_(4)正极材料及其电化学性能显示文摘目前磷酸铁锂材料由于其较低的能量密度难以满足使用需求。磷酸锰铁锂具有比磷酸铁锂更高的能量密度,同时兼顾磷酸铁锂低成本和晶体结构稳定性的特点。然而缓慢的锂离子扩散动力学和Mn^(3+)引起的Jahn-Teller效应导致材料的循环和倍率性能差,限制了磷酸锰铁锂实际应用。本工作通过引入F离子掺杂,构筑沿b轴取向生长的110nm纳米颗粒磷酸锰铁锂正极材料,探究了它们的基本物理化学性质与电化学性能,发现沿b轴取向生长并暴露的(010)晶面能够显著提升锂离子扩散动力学。此外,F离子引入显著增强了Li—O键以及PO_(4)^(3−)骨架结构,提高锂离子嵌入和脱出过程中晶体结构稳定性。因此,在0.1C和5C电流下,改性磷酸锰铁理正极材料可逆放电比容量分别为153mA·h/g和106mA·h/g。相比于未改性材料,1C循环750次后比容量保持率从90.6%提升到96.4%。于松民 金洪波 杨明虎 余海峰 江浩 2024化工进展2024,43,1:0
2Tracking lithiation with transmission electron microscopy显示文摘Li-ion batteries(LIBs)have dominated energy-storage techniques for portable electronic devices and electric cars,and are expanding their territory into the large-scale energy storage.The energy storage of LIBs is realized by the reversible shuttle of lithium ions between electrodes.It is essential to track the lithium diffusion and obtain a profound insight into the lithiation mechanism during the work cycle of LIBs.Transmission electron microscopy(TEM)is a powerful tool for the structural characterization,which can provide the information about the lithiation at the atomic scale.In this review,we summarize the research frontiers of TEM applications on LIBs.We introduce the techniques for the direct observation of Li species in LIB-related materials.Especially,the application of cryo-TEM is highlighted.Moreover,in-situ TEM technique is further discussed since it shows great advantages in studying the dynamical structure changes of LIBs.The perspectives and strategies in this review offer feasible guidance for researchers to further improve the performance of LIBs.Xincheng Lei Jianxiong Zhao Jiayi Wang Dong Su 2024Science China Chemistry2024,67,1:0
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