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1)  LiFePO4/CaB6 composite
复合物LiFePO4/CaB6
1.
LiFePO4 was synthesized by solid sate reaction and LiFePO4/CaB6 composite with different contents of CaB6 was prepared by two different methods.
采用固相法合成了纯的LiFePO4,并通过两种不同的方法合成了不同CaB6含量的复合物LiFePO4/CaB6
2)  LiFePO4/C composite
LiFePO4/C复合物
1.
This paper determined Li+ content of LiFePO4/C composite by air-acetylene flame atomic Absorption spectrum method,recovery rate of standard series sample with Fe2+ and PO3-4 and without Fe2+ and PO3-4 were determinated.
采用空气-乙炔火焰原子吸收法测定了LiFePO4/C复合物中的锂含量,考察了不加基体和加入基体的两种标准系列的回收率;因为目前还没有LiFePO4的标准样品和标准分析方法,所以实验采用模拟标准样品考察了不同酸介质和不同酸用量的影响,并进行了Fe2+、PO34-、Cr3+、Mg2+、Mn2+、Co2+、Ni2+离子对测定锂的干扰实验。
3)  LiFePO_4
LiFePO4
1.
The LiFePO_4 powder which had some spherical particles was prepared by using the spherical Li_3PO_4 as a precursor and characterized by electrochemical performance test.
以球形Li3PO4为前驱体制备了部分球形的LiFePO4,并对其电化学性能进行了研究。
2.
% activate carbon and sintered 6 hours at 550℃ to prepare olivine LiFePO_4.
以LiOH·H2O(、NH4)2HPO4、FeSO4·7H2O为原料,通过沉淀法制备锂离子电池正极材料LiFePO4前驱体,前躯体中混入2wt%的活性炭在550℃烧结6h得到橄榄石型的LiFePO4。
3.
The electrochemical mechanism of LiFePO_4 as cathode material for lithium ion batteries during charging and discharging is still under debate after ten years of research.
十年来的研究并没有对LiFePO4的电化学反应机理形成准确一致的认识。
4)  LiFePO_4/C
LiFePO4/C
1.
LiFePO_4/C powders were prepared by carbothermal reduction of Li_2CO_3 with FePO_4·H_2O,which was synthesized by aqueous precipitation from solution of FeSO_4·7H_2O and NH_4H_2PO_4 with H_2O_2 as the oxidizing agent.
2H2O,然后通过碳热还原得到LiFePO4/C。
2.
Microwave processing was used to synthesize LiFePO_4 and LiFePO_4/C.
用微波法制备了LiFePO4和LiFePO4/C材料。
5)  Composites [英]['kəmpəzit]  [美][kəm'pɑzɪt]
复合物
1.
Research Progress in Magnetic Polymer Matrix Nanocomposites;
高分子基磁性纳米复合物的研究进展
2.
Preparation method of the composites of ethylene vinylacetate with nano-SiO_2 particles;
乙烯醋酸乙烯酯共聚物与纳米SiO_2颗粒复合物的制备方法研究
3.
Study of dielectric properties in microwave frequency on irradiation HDPE/TiO_2 composites grafted by acrylic acid;
辐照丙烯酸接枝HDPE/TiO_2复合物的微波介电性能研究
6)  Composite [英]['kɔmpəzɪt]  [美][kəm'pɑzət]
复合物
1.
Stiffness and Vibration Characteristics of SMA/ER3 Composites with Shape Memory Alloy Short Fibers;
具有形状记忆短纤维合金的SMA/ER3复合物的硬度和振动特性
2.
Advancement on Electrical-magnetic Polymer Composites;
电磁功能高分子复合物研究进展
3.
Effect of Secondary Doping on Properties of the Conductive Composites of Polyaniline;
二次掺杂对聚苯胺导电复合物性能的影响
补充资料:CAB
分子式:[C6H7O2(OCOCH3)x(OCOC3H7)y(OH)3-x-y]n 
CAS号:

性质:醋酸经高温裂解法制成醋酐。醋酐与丁酸以酸酐交换法制成丁酐。利用精制棉短绒以硫酸为触媒,醋酸、丁酸为溶剂与醋丁酐进行均相酯化反应即得粗制品,再经水解、中和、沉析、水洗、蒸煮、干燥得最终成品醋酸丁酸纤维素。CAB的分子中除羟基、乙酰基外还含有丁酰基,其性能与三种基团的含量有关。熔点和拉伸强度随乙酰基含量增高而变大,与增塑剂的相容性和薄膜的柔性在一定范围内随乙酰基含量降低而增加。羟基含量增加促进其在极性溶剂中的溶解度。丁酰基含量增加则使其密度降低,溶解范围扩大。含乙酰基12%~15%,丁酰基26%~29%。透明或不透明粒料,质坚韧,耐候及耐寒性好。熔融温度140℃。密度1.15~1.22g/cm3。拉伸强度14~52MPa,弯曲模量621~2070MPa,悬臂梁缺口冲击强度53~580J/m,洛氏硬度R31~116。热变形温度45~94℃。它具有优良抗湿,耐紫外光、耐寒、柔韧、透明、电绝缘等性能,并能与树脂和高沸点增塑剂有较好的相容性,可制电影片基、空中摄影片基、薄膜、油田天然气等输送管道、工具手柄、汽车、飞机的玻璃灯、地下电话线和电缆管、方向盘、标牌面、闪光反射器等,此外还能做可剥涂料、绝缘漆、耐候高档漆和人造纤维。

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