专利成果
当前位置: 王接喜的个人教师主页 >> 专利成果[29] 1st, 一种磷酸铁锂碳纳米管复合正极材料的制备方法, ZL 202010625891.5
[28] 1st, 一种磷酸铁锂前驱体碳纳米管复合材料, 202010629174.X
[27] 1st, LiFePO4/CNTs复合正极材料的制备方法, ZL 202010625885.X
[26] 1st, 一种原位生长多金属氧酸盐改性锂离子电池正极材料的制备方法, ZL 202210620573.9
[25] 1st, 一种具有稳定界面的改性高镍正极材料及其制备方法、锂离子电池, ZL 202311730258.2
[24] 1st, 两段氯化焙烧-碱液浸出法从锂云母中提锂制备碳酸锂的方法, ZL 201711443400.X
[23] 1st, 一种磷酸铁锂/碳纳米管复合正极材料的制备方法, ZL 202010624186.3
[22] 1st, 高振实密度多元氧化物前驱体及其制备方法与制备系统, ZL 202110116149.6
[21] 1st, 缓释型功能性隔膜及其制备方法、锂电池, ZL 202110558191.3
[20] 1st, 氟磷酸钒钠的制备方法, ZL 201810626201.0
[19] 1st, 一种亲锂性负极的制备方法、亲锂性负极和锂电池, ZL 201910558152.6
[18] 1st, 改性的氟磷酸钒钠正极材料的制备方法及其应用,ZL 201810343930.5
[17] 1st, 浆料储能方法,ZL 201810903600.7
[16] 1st, 流化床式半固态液流反应系统,ZL 201810903562.5
[15] 1st, 一种金属锂合金及其制备方法与应用, ZL 201910552753.6
[14] 1st, 一种金属锂单质及其制备方法与应用,ZL 201910552745.1
[13] 1st, 一种Li3V(MoO4)3锂离子电池负极材料及其制备方法, ZL 201510477043.3.
[12] 1st, 一种MoS2/C/LiVPO4F复合正极材料及其制备方法, ZL 201610039943.4.
[11] 1st, 一种利用PVC热解从锂云母提取锂的方法, ZL 201711443398.6.
[10] 1st, 两段氯化焙烧-碱液浸出法从锂云母中提锂制备碳酸锂的方法, ZL 201711443400.X.
[9] 1st, 高振实密度金属氧化物、制备方法及锂离子电池, ZL 201710751274.8.
[8] 1st, 锂离子电容器及其制备方法, ZL 201710344591.8
[7] 1st, 三元正极材料及该材料和其前驱体的制备方法, ZL 201710822648.0
[6] 2nd, 一种制备三元复合正极材料LiNixCoyMn1-x-yO2的方法, ZL 201110331881.1.
[5] 2nd, 一种制备锂离子电池正极材料氟磷酸钒锂的方法,ZL 201110332919.9.
[4] 2nd, 一种球形锂离子电池复合正极材料氟磷酸钒锂-磷酸钒锂的制备方法, ZL 201210005975.4.
[3] 2nd, 一种改性锂离子电池锰系正极及制备方法, ZL 201310120383.1.
[2] 2nd, 一种对称式水溶液锂离子电池, ZL 201410133295.X.
[1] 2nd, 磷酸铁锂基复合正极材料及其制备方法和应用, ZL 201410150685.8.
