Mn掺杂改性{010}面择优生长的磷酸铁锂纳米片  被引量:4

Mn-doped modification of lithium iron phosphate nanoplates with {010} plane preferential growth

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作  者:陈路路[1] 杨柳[1] 刘双任 陈金伟[1] 王瑞林[1] CHEN Lu-lu;YANG Liu;LIU Shuang-ren;CHEN Jin-wei;WANG Rui-lin(School of Materials Science and Engineering,Sichuan University,Chengdu 610065,P.R.C.)

机构地区:[1]四川大学材料科学与工程学院,四川成都610065

出  处:《西南民族大学学报(自然科学版)》2015年第3期373-378,共6页Journal of Southwest Minzu University(Natural Science Edition)

基  金:四川省应用基础研究(2013JY0150);中物院科研基金(HG2012039);四川省科技支撑计划(2013FZ0034)

摘  要:以LiOH,(NH_(4))_(2)Fe(SO_(4))_(2)和NH_(4)H_(2)PO_(4)为原料,抗坏血酸为添加剂通过水热法制备出了{010}晶面择优生长的LiFePO_(4)纳米片,在此基础上以MnSO_(4)为锰源,制备了锰掺杂磷酸铁锂复合材料LiFe_(1-x)Mn_(x)PO_(4)/C(x=3%、5%、7%),并研究了不同Mn^(2+)掺杂量对LiFePO_(4)的晶体结构和充放电、交流阻抗(EIS)等电化学性能的影响.XRD、SEM和EDS测试结果表明:Mn^(2+)成功掺入到了LiFePO_(4)晶格中,掺杂后的材料仍是具有橄榄石结构的纳米片,且具有更小的颗粒尺寸,但是{010}晶面的择优情况在一定程度上被抑制了.恒流充放电测试中,在0.1 C倍率下,材料Li Fe_(0.95)Mn_(0.05)PO_(4)/C的首次放电比容量达到了165.26 m A·h g^(-1),表现出了良好的电化学性能.交流阻抗测试结果表明Mn^(2+)的掺杂降低了电荷迁移电阻,提高了材料的电子导电率.LiFe1-xMnxPO_(4)(x=0%,3%,5%,7%)was prepared by hydrothermal method.M icrostructure and electrochemical properties of the were studied.The structure and morphology of the samples were characterized by X-ray diffraction(XRD)and scanning electron microscope(SEM),electrochemical performances were investigated by constant current charge-discharge and electrochemical impedance spectroscopy(EIS).The results showed that Mn-doped LiFePO_(4)preserved pure olivine structure and nanoplates morphology.Although the preferred growth of{010}planes was inhibited in some degree,but the particle size decreased and the electronic conductivity of LiFe_(1-x)Mn_(x)PO_(4)increased.The Mn-doped LiFePO_(4)had a reversible capacity of 165.26 mA.h g^(-1)at 0.1 C discharge rate,and showed good electrochemical properties.

关 键 词:LiFePO_(4) MN掺杂 电导率 {010}晶面 水热法 

分 类 号:TM911[电气工程—电力电子与电力传动] O614.111[理学—无机化学]

 

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