Li4Ti5O12,Li_4Ti_5O_(12)
1)Li_4Ti_5O_(12)Li4Ti5O12
1.The research status of crystal structure,character of lithium inserting,synthetic method and doping modification of lithium titanate(Li_4Ti_5O_(12)) as anode material for Li-ion battery was reviewed.介绍了锂离子电池负极材料钛酸锂(Li4Ti5O12)的晶体结构、嵌锂特性、制备方法及掺杂改性的研究现状。
2.At 1000 ℃, through one step and no pressing pellet for reactants, the pure cubic-spinel phase Li_4Ti_5O_(12) was prepared with amorphous-TiO_2+Li_2CO_3 for 8 h in air.以无定形TiO2 为原料,反应物无需压制,在1 000 ℃反应8 h制得性能较好的纯尖晶石相Li4Ti5O12, 充放电电流为0 5c时比容量为127 mA·h·g-1,0 1c时比容量达145 mA·h·g-1。
3.Li_4Ti_5O_(12) was prepared by solid-state method with different sources of titanium(anatase,rutile,amorphous) and lithium(Li_2CO_3,LiOH·H_2O),the preparation of Li_4Ti_5O_(12) was optimized and Li_4Ti_5O_(12) was characterized.H2O),采用高温固相合成法合成Li4Ti5O12,并对Li4Ti5O12的合成工艺进行了优化。
2)Li4Ti5O12 coatingLi4Ti5O12微粒
3)nanoLi4Ti5O12纳米Li4Ti5O12
4)spinel Li4Ti5O12尖晶石Li4Ti5O12
1.An in-situ technology for the preparation of spinel Li4Ti5O12 by hydrolysis of TiCl4 in acidic aqueous solution was presented.以TiCl4和LiOH·H2O为原料,通过控制TiCl4水溶液水解条件,让Li+离子嵌入Ti的水解产物中,原位合成了尖晶石Li4Ti5O12
5)lithium[英]['l?θi?m][美]['l?θ??m]Li
1.The Geochemistry of Lithium in Salt Lake on Qinghai-Tibetan Plateau;青藏高原盐湖Li地球化学
2.The measurement result of Li isotopic composition shows that the visible isotopic fractionation of lithium does not take place during chemical process and the ratio of ~6Li/~7Li is 0.采用 Dowex-50w×8强酸性阳离子树脂为吸附剂、HCl-CH_3OH 混合溶液为淋洗液的离子交换法分离大气气溶胶中 Li 与其它元素,并采用 Li_3PO_3样品涂样形式的热电离质谱法测量了大气气溶胶中 Li 的同位素比值。
英文短句/例句

1.Preparation of Mg-Li Mg-Li-Zr Zn-Zr Alloys by Electrolysis in Molten Salt;熔盐电解制取Mg-Li Mg-Li-Zr Zn-Zr合金
2.The Ion Exchange Behavior of Na/Li and Ag/Li for LiZr_2(PO_4)_3LiZr_2(PO_4)_3的Na/Li及Ag/Li离子交换
3.MAlH_4(M=Li,Na) Materials for Hydrogen StorageMAlH_4(M=Li,Na)储氢材料
4.Effects of Li Promoter on the Catalytic Performance of Fe-Li/AC for Ethylbenzene Dehydrogenation in the Presence of CO_2助剂Li对CO_2气氛下Fe-Li/AC催化剂上乙苯脱氢反应性能的影响
5.My name is Li Ming . L - I, Li, M - I - N - G, Ming .我的名字是李明。 Li,m-i-n-gming.
6.My name be lI ming. l - I , lI , m - I - n - g , ming .我的名字是李明。Li, m-i-n-g ming.
7.The Study on Compressive Creep Properties of the Ultra-Light Mg-Li Based Alloy;超轻质Mg-Li合金压蠕变行为的研究
8.Study on the Separation Processes of the Li~+,Mg~(2+)//CI~--H_2O System by Crystallization Method;Li~+,Mg~(2+)//CI~-—H_2O体系结晶法分离研究
9.Study Enough-Requirement of Li-Yorke Chaos;Li-Yorke混沌的充要条件的研究
10.The Research on the Effect of Additive Metal-Aluminium on the Synthesis of cBN in the Li_3N System;Al对Li基触媒合成cBN影响的研究
11.Li-Yorke chaos set in generalized symbolic dynamical system;广义符号动力系统上的Li-Yorke混沌集
12.A Perturbation-Incremental Method for Limit Cycles of Liénard Equation;Linard方程多个极限环的计算
13.About Simplification of Li-Yorke Choatic Definition;关于Li-Yorke混沌定义的简化
14.The WBEPM method to calculate energy level and wave function of Li atom;计算Li原子能级和波函数的WBEPM方法
15.The Effect of Li~+ on Enhancing Upconversion Photoluminescence of Rare Earth Ions and Its MechanismLi~+增强稀土离子荧光现象及机制研究
16.Research on Preparation of Wrought Mg-Li-Al-Zn-Nd AlloyMg-Li-Al-Zn-Nd变形镁合金制备的研究
17.A Study of Li~+ Diffusion Performance of WO_3 Thin FilmsWO_3薄膜的Li~+传输性能的研究
18.Study on the LiTFSI-based electrolytes for Li/MnO_2 batteriesLi/MnO_2电池用LiTFSI系电解液的研究
相关短句/例句

Li4Ti5O12 coatingLi4Ti5O12微粒
3)nanoLi4Ti5O12纳米Li4Ti5O12
4)spinel Li4Ti5O12尖晶石Li4Ti5O12
1.An in-situ technology for the preparation of spinel Li4Ti5O12 by hydrolysis of TiCl4 in acidic aqueous solution was presented.以TiCl4和LiOH·H2O为原料,通过控制TiCl4水溶液水解条件,让Li+离子嵌入Ti的水解产物中,原位合成了尖晶石Li4Ti5O12
5)lithium[英]['l?θi?m][美]['l?θ??m]Li
1.The Geochemistry of Lithium in Salt Lake on Qinghai-Tibetan Plateau;青藏高原盐湖Li地球化学
2.The measurement result of Li isotopic composition shows that the visible isotopic fractionation of lithium does not take place during chemical process and the ratio of ~6Li/~7Li is 0.采用 Dowex-50w×8强酸性阳离子树脂为吸附剂、HCl-CH_3OH 混合溶液为淋洗液的离子交换法分离大气气溶胶中 Li 与其它元素,并采用 Li_3PO_3样品涂样形式的热电离质谱法测量了大气气溶胶中 Li 的同位素比值。
6)(Li)VOPO_4(Li)VOPO4
延伸阅读

Li-Ti gyromagnetic (mi-crowave)ferrite分子式:CAS号:性质:在锂铁氧体基础上用四价钛离子置换一部分三价铁离子所形成的旋磁铁氧体。具有尖晶石型结构,典型化学式为O4,式中[ ]代表八面体晶位,其余金属离子处于四面体晶位。锂铁氧体中引入钛离子,在于降低饱和磁化强度。饱和磁化强度可达0.04T。铁磁共振线宽3.6kA/m左右。居里温度120~275℃。磁滞回线为矩形。对应力不敏感。主要原料为二氧化钛、碳酸锂和氧化铁。为防止烧结过程中锂的挥发损失和降低烧成温度,配料时常加入微量的氧化铋。采用一般电子陶瓷工艺,热压烧结或氮气氛烧结。为提高自旋波共振线宽,常加入少量氧化钴。为降低铁磁共振线宽,有时还加入少量氧化锌。可用于制作C波段和X波段的数字移相器。