Optimization for synthesis process of lithium manganate from lithium carbonate and trimanganese tetroxide 碳酸锂和四氧化三锰合成锰酸锂的工艺优化研究
Preparation of Lithium Manganate and the Recovery of Cathode Material from Spent Lithium-ion Battery 锂离子电池锰酸锂正极材料的制备与废旧锰酸锂正极材料的回收利用
Synthesis of spinel lithium manganate as lithium ion sieve 尖晶石型锰酸锂锂离子筛的合成研究
Preparation Technology and Electrical Property of Strontium Doped Lanthanum Manganate Films 掺锶锰酸镧薄膜的制备工艺及电性能研究
Effect of Potassium Manganate Bath and Boric Acid Compression on Pemphigus 高锰酸钾溶液药浴加硼酸湿敷治疗天疱疮效果观察
Preparation and Performance of Co and La Co-doped Li-rich Lithium Manganate 钴镧掺杂富锂型锰酸锂制备及其性能
The potassium permanganate is one kind of important manganese compound, at present, it is mainly produced with the potassium manganate for the between product. 高锰酸钾是一种重要的锰的化合物,它的制备目前主要是用锰酸钾为中间产物来制备。
Preparation and capacitive performance of lithium manganate in neutral electrolyte solutions 锰酸锂的制备及其在中性电解液中的电容性能
Preparation and properties of precursors of lanthanum manganate 镧锰酸盐前驱体的制备及性能研究
Preparation and Characterization of Oxygen Gas Sensor with Strontium-doped lanthanum Manganate-Zirconium Dioxide 掺锶锰酸镧&二氧化锆氧气传感器的制备及其性能测试
Spinel lithium manganate ( LiMn2O4) was synthesized by high temperature solid-state reaction. 用高温固相法合成尖晶石型锰酸锂(LiMn2O4)电极材料。
The addition of these alkaline-earth metal ions catalyzed the reaction of potassium manganate with luminol and the reaction of potassium manganate with fluorescein and resulted in strong CL signal producing; 碱土金属离子Mg~(2+)或Ca~(2+)或Sr~(2+)或Ba~(2+)的加入催化了锰酸钾与鲁米诺或锰酸钾与荧光素间的反应从而导致较强的化学发光信号的产生;
Effect of Temperature on Crystal and Crystalline Granularity of Nanometer Lithium Manganate by Detonation 温度对爆轰合成纳米锰酸锂晶形及粒度的影响
The manganate phosphating technology of camshaft is introduced. 介绍凸轮轴的磷化工艺。
It is a common knowledge that the anode material accounts for over 40% of the total cost of lithium battery and lithium manganate is the most promising anode material. 正极材料在锂离子电池成本中约占40%以上,锰酸锂被认为是目前最具发展前景的锂离子电池的正极材料。
A brief introduction is made to the production, research, utilization in high-tech fields and development trend of the manganese-bearing materials, with electrolytic manganese metal, manganic manganous oxide ( Mn 3O 4), lithium manganate as the representative. 简要介绍了以电解金属锰、四氧化三锰、锰酸锂等为代表的锰系材料的生产、研究及其在高新技术领域的应用情况及发展趋势。
Mixed Doping and Nonstoichiometry Effect in Manganate 混合掺杂和非计量比对钕锶锰氧体系的影响
The colossal magnetoresistance effect gives manganate great and potential application value in magnetic recording and magnetic detection and sensor field, which excitated people to research. 巨大的磁电阻效应使锰氧化物在磁记录,磁探测及传感器方面均具有巨大的潜在应用价值,激发了人们的研究热情。
Progress of Potassium Manganate Preoxidation Method for Source of Drinking Water 饮用水水源高锰酸钾预氧化技术研究进展
The results suggest that the activity of Cu Mn catalyst comes from the combination of CuO, manganese oxide and copper manganate, especially copper manganate acts main role on the catalytic reaction. 结果表明,铜锰催化剂的活性源于氧化铜、氧化锰及锰酸铜之间的紧密结合,其中锰酸铜物相的存在对反应起着十分重要的作用。
A new method is narrated in the paper about the synthesis of γ lactone resulted from one step reaction of manganate and olefin combining with carboxylic acid radical cluster. Furthermore, it proposes the mechanism on free radical reaction. 叙述了通过锰盐与烯烃和羧酸基团的反应,一步合成γ-内酯的新方法,并且提出自由基反应机理。
Preparation and Application of Lithium Manganate in Production of Lithium Cell 锰酸锂在锂电池中的制备及应用
It is a effective approach for reducing cost of Li-ion battery to make spinel manganate lithium. 制备尖晶石型锰酸锂是降低锂离子电池成本的有效途径。
The produce potassium manganate reacted with luminol or fluorescein very slowly; 生成的锰酸钾与鲁米诺或荧光素缓慢地发生反应;
Barium ferrate was prepared by SPE cation membrane in the anode chamber and barium manganate was prepared by the direct chemical technique. 以离子交换膜技术制备了高铁酸钡,用直接化学法制备了锰酸钡,并将其作为电池正极材料,应用于碱性电池中。
High-valence oxides such as ferrate(ⅵ) salts 、 manganate(ⅵ) salts and halogen(ⅴ) salts have high oxidation potential. The studies explored their applications in the fields of wastewater treatment and batteries positive material. 高价态氧化物如高铁酸盐、锰酸盐、卤酸盐具有较高的氧化还原电位,本文研究其在污水处理和新型正极活性材料方面的应用。
Compared with the pure graphite anode ( 34.1mW/ m2), sulfonated polyaniline, sulfonated polyaniline/ manganate composite, and sulfonated polyaniline/ vanadate composite give the maximum output power density with 129.1, 140.6, and 187.1 mW/ m2, respectively. 与石墨阳极(34.1mW/m2)相比,磺化聚苯胺、磺化聚苯胺锰酸盐复合阳极、磺化聚苯胺钒酸盐复合阳极的最大输出功率密度分别为129.1140.6Ω和187.1mW/m2。
However, the selection of conditions such as temperature plays an important effect on the valence state of manganese in the actual production of lithium manganate. 但是在实际合成材料的过程中,煅烧温度等条件的选择对锰的价态起着很大的影响。