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1.
锂离子电池正极材料LiMn2O4的低热固相合成与性能表征   总被引:6,自引:0,他引:6  
锂离子电池具有比能量高、环境污染小等优点,广泛应用于手提电话、便携式电脑、摄像机等设备中。其正极材料的研究是锂离子电池的研究重点。层状结构的LiCoO2、LiNiO2和尖晶石结构的LiMn2O4是仅有的三种能在3.5V以上电位可嵌入Li的正极材料[1~3]。目前市售的锂离子电池主要采用LiCoO2作正极材料,但由于Co资源缺乏和价格相对昂贵,而锰资源丰富,价格低廉且无毒,对环境友好,因此世界各国都在大力进行以LiMn2O4为正极材料的锂离子电池的实用化研究。LiMn2O4传统的制备方法是高温固相反应合成法[4~7],但由于Mn的变价多,与Li形成贫Li或…  相似文献   

2.
LiFePO4:水热合成及性能研究   总被引:4,自引:0,他引:4  
LiFePO4是继尖晶石型LiMn2O4[1]之后的一种新型锂离子电池正极材料,其具有结构稳定,工作电位适中(3.45VvsLi/Li )、可逆容量高、无毒价廉等优点,被认为是极具发展潜力的锂离子电池正极材料[2]。有关LiFePO4的结构[3]和性能[4]研究引人关注。目前,LiFePO4主要是采用高温固相法[5]来合成,尽管简单方便,但由于该传统方法的局限性,很难得到纯度高、粒径小、电性能好的LiFePO4。因此人们尝试用微波加热[6]、溶胶-凝胶[7]、共沉淀[8]等制备方法,希望得到理想的LiFePO4材料,但是采用水热法制备LiFePO4鲜见报道。本文采用水热法制备了纯…  相似文献   

3.
随着大气中CO2浓度的增加,温室效应日趋严重,促使人们对大气中CO2的转化与消除这一课题更加重视。1990年Yutaka Tamaura[1]发现氧缺位磁铁矿几乎可以100%分解CO2后,为解决温室效应提供了一条新的探索途径。通过对不同铁酸盐MFe2O4(M=Fe,Mn[2],Co[3],Zn[4],Ni[5]等)分解CO2活性的考察,发现铁酸镍在300℃分解CO2的活性比其它铁酸盐都好。NiFe2O4的制备最常采用的是共沉淀法、柠檬酸溶胶凝胶法和水热法,3种方法由于制备  相似文献   

4.
低热固相反应法制备纳米LiCoO2的研究(Ⅰ)   总被引:2,自引:0,他引:2  
LiCoO2是目前商品锂离子电池的正极材料.虽然其价格昂贵,但与LiNiO2或LiMn2O4等相比,LiCoO2较易合成且生产工艺较成熟,因此其性能改进仍受到普遍关注.目前LiCoO2的合成方法主要是高温固相法[1~4],一般在700~900℃范围内烧结得到HT-LiCoO2;此外还可用低热法得到LT-LiCoO2[5~7];或通过CoOOH/LiOH·H2O/H2O混合物经H+/Li+离子交换得到LiCoO2[8].  相似文献   

5.
1、引言: 作为锂离子电池的正极材料,LiMnyFe1-yPO4中的Mn3 /Mn2 电对在4.0V(vs Li /Li)附近能实现锂离子的嵌脱,获得4.0V平台的容量而提高了电池的能量密度,因而引起了人们的极大兴趣[1].Yamada[2],Li[3]已经用固相法合成了LiMnyFe1-yPO4,发现当Mn的含量y=0.5~0.75之间时,材料的电性能达到最优.  相似文献   

6.
为提高锂离子电池正极材料Li[Li0.2Ni0.2Mn0.6]O2的首次充放电效率,对固相法合成的该材料进行了酸浸的改性研究。通过X射线衍射(XRD)、扫描电子显微镜(SEM)对所得样品的结构、形貌进行了表征。结果表明,Li[Li0.2Ni0.2Mn0.6]O2经过酸处理后,首次放电效率得到了较大的提高,但是放电中值电压明显下降。其中,0.5 mol.L-1的硝酸浸泡5 h的效果最佳,首次放电效率达到了86.7%,同时放电容量达到最大值的循环次数大大减少。酸浸改性的原因被归结于材料表面出现了富锂尖晶石结构Li4Mn5O12相。  相似文献   

7.
0引言众所周知,钛及其合金具有优良的机械力学性能,但其生物活性不足。因此,在金属基体上涂敷一层生物活性涂层,结合金属与生物活性材料的各自优势,已成为世界各国学者研究最为活跃的生物复合材料体系之一。该体系可用于临床医学,作为人体硬组织等的修复替换材料。目前,已开发出多种在金属基体上制备生物活性涂层的工艺和方法。如:等离子沉积法[1]、离子束溅射法[2]、激光熔覆法[3]、溶胶鄄凝胶法[4]、电化学沉积与水热处理合成法[5]、电泳沉积[6]、电结晶[7]等多种方法。但现有涂层材料尚存在一些问题:(1)由于替换材料的高硬度而导致其周围硬组织坏死[8];(2)由于疲劳磨损或热膨胀不匹配引起涂层脱落[9];(3)由于异质相导致生物活性降解[10]。因此,研究新的制备工艺,开发新的生物复合材料体系就显得十分重要。考虑到Al2O3具有优异的抗磨损、耐腐蚀等性能,以及较好的生物相容性,常作为临床选用的人造硬组织承载材料[11],故在本研究工作中,我们首次采用阳极氧化与水热处理复合工艺研制酸式磷酸钙/Al2O3鄄Ti生物复合材料体系。该体系不同于由日本Ishizawa等研制的HAp/TiO2鄄Ti复合体系[12]。主要体现在两...  相似文献   

8.
以Li2CO3、MgO和TiO2为原料,采用高温固相法合成了具有尖晶石结构材料Li2MgTi3O8。采用X射线衍射(XRD)、傅里叶红外光谱(FTIR)等手段对材料的晶体结构进行了表征,材料的电化学性能通过恒流充放电、循环伏安(CV)进行测试。结果表明,材料具有优异的循环稳定性和良好的库伦效率。在室温下,充放电倍率为0.5C时,Li2MgTi3O8首次放电比容量为215.6mAh·g-1,100周循环后保持在225mAh·g-1。  相似文献   

9.
通过改变金属离子的浓度比例,采用连续控制结晶法制备出镍钴锰金属元素连续浓度梯度变化的前驱体[Ni_(0.85)Co_(0.08)Mn_(0.07)](OH)_2。再与LiOH·H_2O混合,通过高温固相法得到全梯度材料Li[Ni_(0.85)Co_(0.08)Mn_(0.07)]O_2。XRD结果表明该梯度材料阳离子混排程度比纯相Li[Ni_(0.85)Co_(0.08)Mn_(0.07)]O_2更低,具有更好的层状结构。扫描电镜结果显示Li[Ni_(0.85)Co_(0.08)Mn_(0.07)]O_2具有球形形貌,粒径分布比较集中,颗粒平均粒径分布在11.5~12μm,切面元素扫描显示沿着球径方向从球心到外壳,镍含量越来越低,而钴锰的含量越来越高。越靠近颗粒表面,镍的含量越低,而钴锰的含量越高。电材料在0.1C放电倍率下首次放电比容量可达204.3 mAh·g~(-1),1C放电倍率的首次放电比容量为185.3 mAh·g~(-1),循环100次后,仍有164.7 mAh·g~(-1),容量保持率达89.17%。在高温55℃环境下,1C首次放电比容量可达202.7 mAh·g~(-1),容量保持率为85.84%,性能均好于纯相Li[Ni_(0.85)Co_(0.08)Mn_(0.07)]O_2。  相似文献   

10.
纳米Sb2O3的制备与性能研究   总被引:2,自引:0,他引:2  
由于Sb2O3是一种性能优良的无机阻燃剂,并与卤素阻燃剂有很好的协效作用[1],1998年,全球用于阻燃的Sb2O3达80kt以上,占阻燃剂总耗量的7%[2]。但由于其本身的极性特点,加入到纤维、塑料等高分子材料中,材料的力学性能受到很大损失[3],因此对传统的微米级的Sb2O3进行超细、表面处  相似文献   

11.
This contribution reports for the first time on the synthesis and the main physical properties of single-phase pure α-Cr2O3 nanoparticles synthesized by a facile, rapid and eco-friendly process using Callistemon viminalis flower's extract as an effective oxidizing/reducing agent. These crystalline nanoparticles exhibit a cubic-like platelet shape with sharp edges with an average particle diagonal size of ~92.2?nm. The room temperature physical properties of these pure highly crystalline Eskolaite α-Cr2O3 nanoparticles were carried out using complementary techniques such as high-resolution transmission electron microscopy (HRTEM), energy-dispersive X-ray spectroscopy (EDS), XRD, FTIR-ATR, Raman and XPS.  相似文献   

12.
本文通过溶胶-凝胶法制备三元系Co1.5Mn1.5-XNiXO4(X=0,0.1,0.3,0.5,0.7,1.0)NTC热敏电阻粉体材料,采用激光粒度分析、X射线衍射分析、红外光谱分析、电阻测量等手段,表征了煅烧材料的颗粒尺寸、烧结体的物相、红外吸收光谱以及陶瓷材料的电学特性。结合XRD、IR的分析结果,探讨了阳离子分布与热敏电阻电性能之间的关系,为解决热敏电阻材料高精度、高可靠性方面提供了依据。结果表明:随着Ni离子的增加,所得热敏材料的电阻率呈U型变化,材料常数B值从4427减小到2429K,该系列的电阻率、B25/50值调整范围较大,是一种具有实际应用价值的NTC热敏电阻。  相似文献   

13.
胶溶-水热晶化过程中纳米TiO2相稳定性研究   总被引:1,自引:0,他引:1  
The phase stability of nanocrystaline anatase and rutile TiO2 in sols peptized at different temperature has been studied by X-ray Diffraction (XRD) and thermodynamical analysis. The results show that the stability of nanocrystaline TiO2 of different crystal types is a function of particle size. According to the thermodynamical analysis, anatase TiO2 becomes more stable than rutile TiO2 when the particle size is less than ca. 14 nm, which coincides with the experimental data obtained by XRD. Both surface Gibbs free energy and surface stress play important roles in the thermodynamically phase stability. Comparing the data calculated thermodynamically with the experimental results obtained under different temperatures, it is found that the constant K in the function relation, f=KGS, between surface free energy GS and surface stress f is temperature dependent and equal to 1 at 333 K and 2 at 453 K, respectively.  相似文献   

14.
Na2O-B2O3-SiO2 (NBS) gels containing a large amount of CdS quantum-dots (10 wt%) were densified using the hot press (HP) sintering method. By HP treatment, full-densification temperature could be lowered by about 40°C than that of the normal non-pressing (NP) heat treatment. Exciton absorption of CdS quantum-dots in HP-sample showed a large blue shift compared with that in the NP sample, and the size-distribution of CdS dots remained very sharp, with a mean particle diameter d = 3.66 nm and a standard deviation of = 0.72. HP pressure had a large effect on the reduction of sintering temperature and time, resulting in the suppression of the aggregation and growth of CdS quantum-dots in NBS glasses.  相似文献   

15.
采用微乳法合成出氧化铁的前驱体——纳米β-FeOOH, 分别以β-FeOOH与添加剂壬基酚聚氧乙烯醚(NP-4)以物质量的比(n)为4, 5, 100添加NP-4, 混合煅烧. 采用拉曼光谱分析了样品中炭含量及分布, 并且用透射电镜观测产物的形貌和粒径, 采用磁强计观测产物磁性的变化. 结果得出, 对n=5或破乳所得凝胶煅烧, 所得样品皆为分散均匀的四方形颗粒状, 且为磁性明显增强的纳米氧化铁γ-Fe2O3. 还分别讨论了样品中炭含量以及颗粒形状对比饱和磁化强度σs、矫顽力、矩形比的影响.  相似文献   

16.
LiMn2O4 powder for lithium-ion batteries was prepared by a precipitation method, and the effects of calcination temperature on the physical properties and electrochemical performance of the samples were investigated by various methods. The results of X-ray diffraction (XRD) showed that the lattice parameter (a) and the unit cell volume (v) decrease with the increasing calcination temperature, and the LiMn2O4 sample calcined at 750°C has smaller particle size and higher crystallinity than other samples. The results of the electrochemical experiments showed that the sample calcined at 750°C has larger peak currents, higher initial capacity, and better cycling capability, because of its lower charge-transfer resistance and larger diffusion coefficient of Li+ ions than those of other samples.  相似文献   

17.
Summary. The textural characteristics, including surface area, mean pore diameters, and total pore volume of Cr2O3–CuO/Al2O3 solid catalysts were determined from the low temperature adsorption of N2 at 77 K. The structural properties were investigated using XRD. The surface acidity of calcined samples was determined using two comparable methods, including the non-aqueous titration of acidic groups with n-butylamine and dehydration/dehydrogenation activity of cyclohexanol. XRD patterns assigned a crystalline CuO and γ-Al2O3 for 723 K calcinations products of lower Cr2O3 content. The gradual increase of calcinations temperature promoted the crystallinity of Cr2O3 and resulted in solid–solid interaction of CuO and Cr2O3 forming CuCr2O4. The textural parameters varied with both calcinations temperature and catalyst composition. The surface acid density (DAS) increased with the increase of chromia content up to 0.132 mole% Cr2O3, while the rise of calcinations temperature led to a decrease of surface acidity. The dehydration/dehydrogenation of cyclohexanol as well as n-butylamine titration succeeded in characterizing of surface acidity. Present address: Chemistry Department, College of Science, King Faisal University, Al-Hofuf 31982, Saudi Arabia  相似文献   

18.
Tao Lin  Wei Li  Maochu Gong  Yao Yu  Bo Du  Yaoqiang Chen   《Acta Physico》2007,23(12):1851-1856
TiO2,ZrO2-TiO2,andZrO2-TiO2-CeO2 were prepared by co-precipitation method and characterized by X-ray diffraction (XRD), specific surface area measurements (BET), temperature programmed desorption (NH3-TPD), oxygen storage capacity (OSC), and temperature programmed reduction (H2-TPR). The results showed that ZrO2-TiO2-CeO2 exhibited large number of surface strong acid, possessed some oxygen storage capacity, and strong redox property. The three materials were used as supports and the monolith catalysts were prepared with 1% (w) V2O5 and 9% (w)WO3 for selective catalytic reduction (SCR) of NO with ammonia in the presence of excessive O2, and the results of catalytic activity showed that the catalyst used ZrO2-TiO2-CeO2 as support yielded nearly 100% NO conversion at 275 °C at a gas hourly space velocity (GHSV) of 10000 h−1, and it had the best catalytic activity and showed great potential for practical application.  相似文献   

19.
The conversion of phenyl acetate over AlPO4 (Al/P=1), γ-Al2O3 and SiO2 catalysts generated phenol, by deacetylation, ando-hydroxycetophenone, by Fries rearrangement, as the main reaction products. The activity for Fries rerrangement was in accordance with the acidity data measuredversus cyclohexene skeletal isomerization. Thus, AlPO4 showed the highest activity. Moreover,o-hydroxy-acetophenone formation increased with the reaction temperature. Besides, in AlPO4 catalysts 4-methylcoumarin and 2-methylchromone were also found, although in low amounts.  相似文献   

20.
The efflorescence and deliquescence processes of Mg(NO3)2 aerosol particles deposited on ZnSe substrate have been investigated through in situ Fourier transform infrared-attenuated total reflection (FTIR-ATR) technique at the molecular level. At relative humidity (RH) of ∼3%, Mg(NO3)2 particles existed as amorphous states. The amorphous Mg(NO3)2 particles were transformed into crystalline Mg(NO3)2 · nH2O (n ≤ 5) with slight increasing of RH. Thermodynamically stable Mg(NO3)2·6H2O crystals were gradually formed on the particle surface and started to be dissolved at the saturation point (∼53% RH). At the same time, a continuous phase transition from Mg(NO3)2 · nH2O (n≤5) to Mg(NO3)2·6H2O occurred on the particle surface. This led the solid particles to completely deliquesce at 76% RH, which was much higher than the saturation point of 53% RH. In the efflorescence process, Mg(NO3)2 droplets entered into the supersaturated region due to the gradual evaporation of water. Finally, amorphous particles were formed when RH decreased below 5%. In the FTIR-ATR spectra of the supersaturated Mg(NO3)2 droplets, the absorbance of the symmetric stretching vibration of NO 3 (v 1- NO 3 ) clearly became stronger. It resulted from the continuous formation of solvent share ion pairs (SIPs), and even the contact ion pairs (CIPs) between Mg2+ and NO 3 . Supported by the Trans-Century Program Foundation for the Talents by the Ministry of Education of China, the National Natural Science Foundation of China (Grant Nos. 20073004, 20473012, and 20673010), the 111 Project (B07012), and the State Key Laboratory of Physical Chemistry for Solid Surface of Xiamen University  相似文献   

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