首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 140 毫秒
1.
本文以K2SO4为矿化剂,在100 ℃低温水热条件下,制备出大量形貌均一、高分散的直径约40 nm、长度为2~3 μm的α-FeOOH纳米线。该纳米线在300 ℃煅烧2 h后,得到一维形貌保持良好且表面具有多孔结构、长径比可达20的α-Fe2O3纳米线。通过XRD、FTIR、TG-DSC、HRTEM、SAED以及N2物理吸附技术对产物的形貌和结构进行了表征。研究发现,无机盐对一维纳米线形貌的控制至关重要,还详细讨论了K2SO4在α-FeOOH纳米线的成核和生长过程中所起的作用。  相似文献   

2.
王非  塔娜  李勇  申文杰 《催化学报》2014,35(3):437-443
通过调节溶液的pH值,在水热条件下合成出长径比为2-45的La(OH)3纳米棒. 对水热合成过程中间体的结构演变分析,发现高碱度有利于小尺寸晶核的形成,La(OH)3晶体结构的各向异性导致这些晶种沿着C轴方向生长,进而形成纳米棒结构. 将La(OH)3纳米棒前驱体于773 K焙烧可以得到长径比为2-20的La2O2CO3纳米棒. 随着长径比的增加,La2O2CO3纳米棒暴露的(110)晶面逐渐增加,La3+-O2-碱性位的数目也从0.08增加到0.24 mmol/g. 因此,在Claisen-Schmidt缩合反应中,La2O2CO3纳米棒催化剂上的反应速率随着长径比的增加而逐渐增大.  相似文献   

3.
Mn2O3纳米结构的简易合成与电化学性质   总被引:1,自引:0,他引:1  
用简易的室温或水热方法制备出不同形貌的MnCO3微结构。经600 ℃热处理后,室温制备MnCO3转变成Mn2O3胶体片,而水热制备MnCO3样品则形成多孔Mn2O3纳米结构。然而,室温制备MnCO3经120 ℃热处理后形成Mn2O3晶相。制备样品经过XRD和SEM表征表明,热处理MnCO3前驱物形成Mn2O3过程导致产物形貌与结构变化。其形成机理又通过TEM和FTIR进一步研究。Mn2O3纳米结构的电容性质通过循环伏安法表征,结果表明Mn2O3形貌与结构对其电容有重要影响。  相似文献   

4.
泡沫镍负载的NiCo2O4纳米线阵列电极的超级电容性能   总被引:1,自引:0,他引:1  
采用无模板自然生长法制备了泡沫镍支撑的NiCo2O4纳米线阵列电极, 利用扫描电镜(SEM)和透射电镜(TEM)观测了纳米线的表面形貌, 利用X射线衍射(XRD)分析了纳米线的结构, 通过循环伏安、恒流充放电和交流阻抗测试了电极的超级电容性能. 结果表明: NiCo2O4纳米线直径约为500-1000 nm、长度约为10 μm, 垂直且密集地生长在泡沫镍骨架上. 纳米线阵列电极的放电比容量高达741 F·g-1, 循环420次后比容量仍保持在655 F·g-1, 电化学阻抗测试其电荷传递电阻仅为0.33 Ω, 420次循环后电荷传递电阻仅增加0.06 Ω.  相似文献   

5.
在N2/H2O混合气流中将硅片上金覆盖的金属铟颗粒加热到800 ℃制备出了不同形貌的In2O3纳米结构, 在距铟源不同距离处依次得到In2O3的八面体、纳米带、锯齿状纳米线和纳米链. 采用拉曼光谱、扫描电镜、X射线衍射和透射电镜对产物进行了表征分析. 结果表明, 八面体、纳米带、锯齿状纳米线和纳米链均为立方相单晶结构的In2O3. 基于气-固和气-液-固生长机理详细分析了八面体、纳米带、锯齿状纳米线和纳米链的生长过程, 提出了不同形貌In2O3纳米结构的生长模式.  相似文献   

6.
离子电池正极材料LiNi0.5Mn0.5O2的合成   总被引:3,自引:0,他引:3  
采用共沉淀法制备锂离子电池正极材料LiNi0.5Mn0.5O2,前驱体制备过程中金属离子氢氧化物的形貌、粒径分布和最终合成材料的性能息息相关。本文讨论了共沉淀反应过程中沉淀体系、pH值、搅拌速度和氨水浓度对沉淀产物形貌的影响。同时还考察了烧结制度对材料电化学性能的影响。结果表明,在优化条件下制备的正极材料LiNi0.5Mn0.5O2首次放电容量高达178 mAh·g-1,50个循环后放电容量稳定保持在165 mAh·g-1(电压范围2.8~4.5 V,电流密度30 mA·g-1)。  相似文献   

7.
分别用1,2和3 mol·L-1的NaOH溶液,在不同的温度条件下对坡缕石进行了侵蚀实验。对反应后的固相产物进行了XRD和SEM分析,对浸出液中的金属阳离子进行了原子吸收光谱分析。讨论了反应温度和碱溶液浓度对碱溶后产物的影响。XRD和SEM结果表明,cNaOH≤2 mol·L-1时,坡缕石经碱溶液侵蚀后,可以生成蒙脱石和方沸石,其中反应温度的升高有利于方沸石的形成,碱溶液浓度的升高有利于蒙脱石的形成。当碱溶液浓度达到3 mol·L-1,反应温度为200 ℃时,最终产物为SiO2。浸出液的定量分析结果显示,坡缕石与碱溶液的反应过程中,Na+对八面体阳离子的置换具有选择性,置换顺序为:Al3+>Fe3+(Fe2+)>Mg2+。  相似文献   

8.
碱溶液处理NaY分子筛形成的介孔有利于反应物及产物分子的扩散,调节碱溶液浓度可控制Y分子筛中的介孔结构,通过溶液离子交换法制备CuY催化剂,研究了NaY分子筛介孔结构调变对CuY催化剂催化甲醇氧化羰基化反应活性的影响。通过BET、29Si-NMR、XRD、NH3/CO-TPD、H2-TPR和TEM等表征及催化活性分析表明,在碱溶液处理过程中,NaY分子筛骨架中的Si(0Al)和Si(1Al)原子被优先脱除,且笼结构坍塌使得临近超笼连接,逐步形成直径为3.47~3.66 nm,孔容介于0.142~0.226 cm3·g-1的介孔,在提高反应物分子和产物分子扩散性能的同时,提高了活性物种的可接近性。随着碱液浓度的增加,CuY催化剂的催化活性先升高后降低。当碱液浓度为0.2 mol·L-1时,NaY分子筛介孔直径为3.47 nm,孔容达到最大(0.226 cm3·g-1),相应CuY催化剂DMC的时空收率、选择性和甲醇转化率分别达到204.0 mg·g-1·h-1、67.8%和14.0%,活性最佳。  相似文献   

9.
以CoCl2、Na2CO3为原料, 以油酸钠(SOA)为表面活性剂, 采用水热-热分解法合成了纯相尖晶石结构的Co3O4粉体。利用TG-DTA, XRD和SEM等手段跟踪反应过程, 研究了不同水热时间对产物形貌和结构的影响, 并根据实验结果分析了可能的反应机理及结构对光催化性能的影响。实验结果表明:制备前驱体的水热时间是影响产物形貌的关键因素, 并且终产物的结构形貌很大程度上决定了其光催化性能。  相似文献   

10.
球形纳米Fe3O4的制备及超级电容性能研究   总被引:2,自引:0,他引:2  
采用双氧水氧化水热法制备Fe3O4,通过IR、XRD和SEM对样品的结构和性能进行表征。结果表明,产物为形貌规整的球形,平均粒径为25 nm。通过恒流充放电、循环伏安和交流阻抗等方法研究Fe3O4电极的电容性能。电化学测试表明,在1 mol·L-1 Na2SO3溶液中,-1.2~0.2 V(vs SCE)电位范围内,Fe3O相似文献   

11.
针对银精矿样品复杂,难消解的特点,研究了不同酸溶法和碱熔法对样品的消解情况,建立了硝酸,盐酸,氢氟酸,高氯酸消解银精矿的方法。根据元素灵敏度和抗干扰性,选定各元素的测定波长。通过酸溶样和碱熔样测定结果比对,验证了方法准确性。建立了四酸消解-电感耦合等离子体光谱法测定银精矿中铜、铅、锌、砷、镉、钙、镁、锰含量的方法,元素的线性相关系数均在0.9999以上。通过共存元素干扰实验,确定了银精矿中高含量元素(铜、铅、锌、铁、锑、铋等)对测定元素结果没有影响。方法检出限:Cu 0.0063 mg/L, Pb 0.0159 mg/L ,Zn 0.0090 mg/L,As 0.0192 mg/L, Cd 0.0093 mg/L ,Ca 0.0084 mg/L, Mg 0.0075 mg/L, Mn 0.0081 mg/L。测定下限:Cu 0.0105mg/L,Pb 0.0265 mg/L, Zn 0.0150 mg/L, As 0.0320 mg/L, Cd 0.0155 mg/L, Ca 0.0140 mg/L, Mg 0.0125 mg/L,Mn 0.0135 mg/L。3个样品的相对标准偏差在0.87%~3.56%之间,加标回收率在95.00%~103.56%之间。方法流程短,操作简单,快速,灵敏度和再现性高,结果准确可靠,可以满足银精矿中铜、铅、锌、砷、镉、钙、镁、锰含量的测定。  相似文献   

12.
文章合成了Lu(NO3)3(C2H5O2N)4.H2O,用红外和元素分析对其进行了表征。用高精度全自动绝热量热仪,测定了该配合物80-382 K温区的热容, 利用实验热容数据, 根据热容与焓、熵的热力学关系, 求出了配合物85-350 K温区内每隔5 K相对于298.15K的标准热力学函数(HT - H298.15)m和(ST - S298.15)m.在80-350 K温度区间内,配合物的热容随温度升高而增大,没有相转移点和热力学吸收峰的出现,该配合物在此温度区间内是稳定存在的。  相似文献   

13.

The synthesis of fifteen phosphylated compounds having P─OCD3, P─CD3, or P─OCD2CH3 groups is described. Selective chemistry for the precise placement of the deuterated groups was devised, and the products were isolated in a high purity in generally good yields. The compounds were required to study their behavior after electrospray ionization in an ion trap mass spectrometer.  相似文献   

14.
The solid-solid interactions between manganese and magnesium oxides in absence and in presence of small amounts of Li2O have been investigated. The molar ratios between manganese and magnesium oxides in the form of Mn2O3 and MgO were varied between 0.05:1 to 0.5:1. The mixed solids were calcined in air at 400-1000°C. The techniques employed were DTA, XRD and H2O2 decomposition at 20-40°C.The results obtained revealed that solid-solid interactions took place between the reacting solids at 600-1000°C yielding magnesium manganates (Mg2MnO4, Mg6MnO8, MgMnO4 besides unreacted portions of MgO, Mn2O3 and Mn3O4). Li2O-doping (0.75-6 mol%) of the investigated system followed by calcination at 600 and 800°C decreased progressively the intensity of the diffraction lines of Mn2O3 (Bixbyite) with subsequent increase in the lattice parameter 'a' of MgO to an extent proportional to the amount of Li2O added. This finding might suggest that the doping process enhanced the dissolution of Mn2O3 in MgO forming solid solution. This treatment led also to the formation of Li2MnO3. Furthermore, the doping with 3 and 6 mol% Li2O conducted at 800°C resulted in the conversion of Mn2O3 into Mn3O4, a process that took place at 1000°C in absence of Li2O. The produced Li2MnO3 phase remained stable by heating at up to 1000°C. Furthermore, Li2O doping of the investigated system at 400-1000°C resulted in a progressive measurable increase in the particle size of MgO.The catalytic activity measurements showed that the increase in the molar ratio of Mn2O3 in the samples precalcined at 400-800°C was accompanied by a significant increase in the catalytic activity of the treated solids. The maximum increase in the catalytic activity expressed as reaction rate constant measured at 20°C (k 20°C) attained 3.14, 2.67 and 3.25-fold for the solids precalcined at 400, 600 and 800°C, respectively. Li2O-doping of the samples having the formula 0.1 Mn2O3/MgO conducted at 400-600°C brought a progressive significant increase in its catalytic activity. The maximum increase in the value of k 20°C due to Li2O attained 1.93 and 2.75-fold for the samples preheated at 400 and 600°C, respectively and opposite effect was found for the doped samples preheated at 800°C.This revised version was published online in November 2005 with corrections to the Cover Date.  相似文献   

15.
The thermoanalytical curves of (C6H5)4AsCl (I) and (C6H5)4PCl (II) were generated simultaneously by using a Netzsch simultaneous thermal analyser 409 under static air and dynamic argon atmospheres. The ranges of thermal stability of I and II were found to be 145–310°C and 137–365°C, respectively, and their melting points to be 261 and 278°C. The DTA profiles of I and II differ and can be used for their distinction.  相似文献   

16.
娄太平  张乐  郭军兴 《化学学报》2010,68(6):466-470
研究了在不同温度下的NaNO3和AgNO3水溶液中Li1.3Ti1.7Al0.3(PO4)3和Na1.3Ti1.7Al0.3(PO4)3离子交换行为.实验表明Li1.3Ti1.7Al0.3(PO4)3和Na1.3Ti1.7Al0.3(PO4)3均显示出了高选择性与Na+和Ag+进行离子交换的特征,且对Ag+的选择性高于Na+.升高温度可显著提高Ag/Li和Ag/Na的交换反应速度.  相似文献   

17.
The [Pt2(H2P2O5)4]4− ions in the ground and excited states and the excited-state complexes M-[Pt2(H2P2O5)4]3− and M2-[Pt2(H2P2O5)4]2− (M = Ag, Tl) were studied in solution with various density functional theory (DFT) functionals from Gaussian 09 and Amsterdam Density Functional (ADF) programs. Calculated results were compared with ultrafast X-ray solution scattering data. Time dependent DFT (TD-DFT) calculations with the B3PW91 functional and unrestricted open shell calculations with the mPBE functional produce good agreement with the experimental results. Compared to gas phase calculations, the surrounding solvent is found to play an important role to shorten the Pt-Pt and M-Pt (M = Ag, Tl) bond lengths, lowering the molecular orbital energies and influences the molecular orbital transitions upon excitation, which stabilizes the excited transient molecules in solution.  相似文献   

18.
Microwave irradiation of a suspension of γ-MnOOH in a 4 mol dm−3 LiOH solution brought about a rapid formation of semicrystalline orthorhombic LiMnO2 (o-LiMnO2) within 30 min at 120°C. Cubic Li1.6Mn1.6O4 was obtained by heating o-LiMnO2 at 400°C; lithium could be topotactically extracted from Li1.6Mn1.6O4 with acid to form cubic H1.6Mn1.6O4.  相似文献   

19.
Reactivity of mixtures of La(III) oxide and Cu(II) oxalate/nitrate in hydrated as well as anhydrous state was studied using TG, DTA and XRD. Cu(II) oxide formed in the endothermic decomposition of mixture containing hydrated Cu(II) nitrate and La(III) oxide could not form La2CuO4 while Cu(II) oxide formed in the exothermic decomposition of mixture containing hydrated/anhydrous Cu(II) oxalate and La(III) oxide reacts with La(III) oxide and develops the phases CuLaO3 and La2CuO4. The maximum reactivity with respect to the formation of La2CuO4phase was observed in mixture containing anhydrous Cu(II) oxalate. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

20.
The dimeric title compound decomposes upon heating to give the monomer and desulphurized monomer as shown by FT-Raman and quantum chemical means.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号