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1.
以醋酸钡和钛酸四丁酯为原料,采用溶胶-凝胶法合成了纳米BaTiO3粉体;运用差示/热重、X射线衍射及透射电镜对前驱体凝胶和产物进行了表征,并根据XRD结果,研究了纳米BaTiO3的晶格常数、晶格畸变度和晶粒尺寸随焙烧温度及时间的变化。结果表明,焙烧温度与时间对纳米BaTiO3晶格常数的影响不明显;随焙烧温度或时间的延长,纳米BaTiO3的晶格畸变度减小,晶粒尺寸增大,但晶格畸变度和晶粒尺寸更敏感于焙烧温度. 基于扩散控制机理的传统模型探讨了焙烧过程纳米BaTiO3晶粒生长动力学,得出其晶粒生长指数为7,晶粒生长活化能为75.49 kJ/mol. 将基于扩散与反应共同控制机理的新型等温模型应用于本研究中,结果表明,新型等温模型更能真实地反映纳米BaTiO3焙烧过程中的晶粒生长行为,说明纳米BaTiO3晶粒生长过程同时受溶质扩散和表面反应控制,其藕合晶粒生长活化能为27.23 kJ/mol.  相似文献   

2.
锐钛矿相纳米TiO2晶体生长动力学及生长过程控制   总被引:1,自引:0,他引:1       下载免费PDF全文
研究了采用溶胶-凝胶法经由前驱物钛酸四异丙酯水解制备纳米TiO2结构相变及锐钛矿晶体生长动力学过程. 研究结果表明,在酸性条件下水解,由于高压热处理温度的变化导致锐钛矿向金红石相的结构相变,锐钛矿相纳米TiO2生长活化能在250℃以下和以上分别为(15.8±4.5)kJ/mol和(80.2±1.0)kJ/mol;而在碱性条件下水解的活化能值为(3.5±0.4)kJ/mol. 在不发生结构相变的条件下,酸性水解条件下锐钛矿相纳米TiO2生长速 关键词: 2')" href="#">纳米TiO2 锐钛矿 生长动力学 溶胶-凝胶法  相似文献   

3.
胡林华  戴松元  王孔嘉 《物理学报》2003,52(9):2135-2139
讨论了采用溶胶-凝胶法经由先驱物钛酸四异丙脂水解而制备的纳米TiO2粉末的 结构相变 ,并讨论了该纳米粉末的生长动力学机理.结果表明,水解pH值为0.9,当高压釜热处理温度 <503K时,粉末晶粒度增长较为缓慢,而当热处理温度>503K时,粉末粒度明显长大.应用 相变理论计算出了纳米TiO2颗粒的两阶段的生长激活能,分别是18.5kJ/mol和5 9.7kJ/mol .XRD物相分析表明,高压釜热处理温度达到503K时,样品就开始发生锐钛矿到金红石相的结 构相变,到543K就基本实现了这一结构相变,使得这一相变温度比其他文献中报道的又降低 了许多. 关键词: 2')" href="#">纳米TiO2 溶胶_凝胶法 结构相变 晶粒生长动力学  相似文献   

4.
锐钛矿相纳米TiO2晶体生长动力学及生长过程控制   总被引:1,自引:0,他引:1       下载免费PDF全文
研究了采用溶胶-凝胶法经由前驱物钛酸四异丙酯水解制备纳米TiO2结构相变及锐钛矿晶体生长动力学过程. 研究结果表明,在酸性条件下水解,由于高压热处理温度的变化导致锐钛矿向金红石相的结构相变,锐钛矿相纳米TiO2生长活化能在250℃以下和以上分别为(15.8±4.5) kJ/mol和(80.2±1.0) kJ/mol;而在碱性条件下水解的活化能值为(3.5±0.4 kJ/mol. 在不发生结构相变的条件下,酸性水解条件下锐钛矿相纳米TiO2生长速率相比没有碱性条件下快,即表明在酸性条件下提高锐钛矿生长速率主要依靠提高温度来实现,而在碱性条件下,可以通过延长高压热处理时间使得晶体生长速率加快,该研究成果对实现锐钛矿相纳米TiO2晶体尺寸控制和将来批量化制备提供了理论和实验指导.  相似文献   

5.
用傅利叶变换红外光谱仪研究了湖南晨溪地开石热分解前后的红外光谱,加热反应后原矿粉红外光谱在3620.73、3695.34cm-1处的地开石羟基伸缩振动吸收峰和在916.06、1009.33cm-1处的羟基弯曲振动吸收峰都消失,表明其质量失重为羟基脱水.在298~1123K,用TG DTA综合分析仪研究了地开石在程序升温下的热分解行为.结果表明,在600~1000K,其质量损失为13.7%,与理论计算的脱水量相近.根据TG DTG曲线上的基础数据,联合运用积分法(Coats Redfern方程、HM方程、MKN方程)和微分法(Achar方程)对地开石脱水反应过程进行了非等温动力学研究,结果显示,地开石热分解反应的机理函数为F2,求得反应的动力学参数:反应级数为2.1,表观活化能为131.62kJ/mol,指前因子为108.3s-1.作为一种验证方法,使用Ozawa方程对不同升温速率TG曲线上相同分解率处的绝对温度进行线性回归分析,求出的表观活化能值为133.07kJ/mol,此值不仅与上述各种方法的表观活化能值相近,也与确定机理函数时的表观活化能值相近.说明实验求得的动力学参数在很大程度上是可靠的.  相似文献   

6.
室温固相反应制备纳米四水磷酸锌的热化学研究   总被引:3,自引:0,他引:3  
以Na3PO4·12H2O和ZnSO4·7H2O为原料,采用室温固相反应制备纳米四水磷酸锌,用微量热法研究该反应的反应焓和四水磷酸锌的标准摩尔生成焓.根据Hess定律,设计了一个新的热化学循环:以4mol/LHCl溶液为量热溶剂,用RD496微热量计于298.15K测定了反应物与产物在量热溶剂中的溶解焓分别为(-47.180±0.084)和(-7.617±0.096)kJ/mol,同时测定两种溶液的紫外光谱、折光率和电导率.两种溶液的紫外吸收曲线重叠,稀释500倍后的电导率值分别是2180、2181μS/cm,折光率值分别是1.3679、1.3678.计算出该固相反应的反应焓为-39.530kJ/mol,同时得到纳米四水磷酸锌的标准摩尔生成焓,推荐其值为-4354.004kJ/mol.  相似文献   

7.
用溶液法制备了β-CD与1-MCP的包结物,并借助于热分析和X射线粉末衍射法证实了包结物的存在,采用Satava-Sestak法,并结合Ozawa法和Kissinger法,推断出可能的热分解反应机理,获得了热分解反应的动力学参数。结果表明:β-CD与1-MCP包结物热分解反应在170~180℃出现失重,其机理为一维随机成核和随后生长反应,反应机理函数为2/3级反应,其降解反应的活化能为102.14 kJ/mol,指前因子值为3.63×10~(10)s~(-1)。较低的表观活化能说明了β-CD与1-MCP之间没有形成强烈的化学键。  相似文献   

8.
利用固源分子束外延设备生长出InAs/InAlAs/InP(001)纳米结构材料, 探讨了As压调制的InAlAs超晶格对InAs纳米结构形貌的影响. 结果表明, As压调制的InAlAs超晶格能控制InAs量子线的形成, 导致高密度均匀分布的量子点的生长. 结果有利于进一步理解量子点形貌控制机理. 分析认为, InAs纳米结构的形貌主要由InAlAs层的各向异性应变分布和In吸附原子的各向异性扩散所决定.  相似文献   

9.
刘峥  王松梅  王莉 《光谱实验室》2010,27(4):1237-1243
合成了对甲基苯磺酰化丝氨酸配体(L)和对甲基苯磺酰化丝氨酸Nd(Ⅲ)配合物。通过元素分析、热分析、红外光谱、紫外光谱和摩尔电导等分析技术,确定配合物的组成为NdL3。用非等温热重分析方法研究了Nd(Ⅲ)配合物的热分解反应动力学,分解反应一步进行,其分解的动力学方程为dα/dt=Aexp(-Ea/RT)(1-α)2,并计算出了该步热分解的活化熵ΔS#、活化吉布斯自由能ΔG#和活化焓ΔH#分别为-86.7674J/mol.K、219.3884kJ/mol、170.9938kJ/mol。  相似文献   

10.
以硝酸铁、硝酸镍以及柠檬酸为原料,采用凝胶-热分解法制备了N iFe2O4纳米粉末。利用X射线衍射确定了粉体的相结构、比表面积和晶格常数,扫描电子显微镜(SEM)观察了颗粒的形貌,振动样品磁强计(VSM)测量样品的磁性能。结果表明:所制备的样品均为尖晶石结构,颗粒粒径为36nm~68nm,且颗粒的粒径随着热处理温度的升高而增大,样品的比饱和磁化强度最大可达54.63 emu/g。同时,文章也对反应的动力学原理进行了研究,得出N iFe2O4纳米颗粒形成的活化能为15.8kJ/mol。  相似文献   

11.
When a mixture of nickel and aluminum powders is sintered there is an exothermic effect which involves a rise of several hundred degrees in the temperature of the compact in a few seconds. The magnitude and nature of the exothermic effect depend on the aluminum content of the mixture, the degree of dispersion of the powders, and the initial porosity of the specimens. The temperature at which the exothermic effect begins moves towards lower temperatures with increase in the degree of dispersion, with increase in the concentration of aluminum in the mixture, and with decrease in the porosity. The magnitude of the heat effect increases with increase in the aluminum content.It is shown that the exothermic effect in the sintering process arises mainly from decomposition of the liquid phase and crystallization of chemical compounds with large heats of formation. A definite role is played by the metallothermic reduction of nickel oxide by aluminum present in the liquid phase and by the formation of intermetallic compounds at the boundaries of dissimilar particles of powder during sintering in the solid phase.  相似文献   

12.
An advanced, heat-resistant fluoroether rubber (FM-20) was subjected to dynamic thermogravimetric analysis (TGA) in the air atmosphere. The results suggested that its thermal degradation process can be divided into two parts. As the heating rate increased, the initial decomposition temperature and degradation temperature would move to higher ranges. The apparent activation energy of thermal decomposition, calculated by the Kissinger, Friedman and Flynn-Wall-Ozawa methods were 209, 240, and 211kJ/mol, respectively. Furthermore, the probable thermal degradation mechanism was also analyzed by the Coats-Redfern method. As a result, the most reasonable thermal degradation mechanism of FM-20 was g (α) = α3/2  相似文献   

13.
The combustion of bimodal nano/micron-sized aluminum particles with air is studied both analytically and experimentally in a well-characterized laminar particle-laden flow. Experimentally, an apparatus capable of producing Bunsen-type premixed flames was constructed to investigate the flame characteristics of bimodal-particle/air mixtures. The flame speed is positively affected by increasing the mass fraction of nano particles in the fuel formulation despite the lower flame luminosity and thicker flame zone. Theoretically, the flames are assumed to consist of several different regimes for fuel-lean mixture, including the preheat, flame, and post flame zones. The flame speed and temperature distribution are derived by solving the energy equation in each regime and matching the temperature and heat flux at the interfacial boundaries. The analysis allows for the investigation of the effects of particle composition and equivalence ratio on the burning characteristics of aluminum-particle/air mixtures. Reasonable agreement between theoretical results and experimental data was obtained in terms of flame speed. The flame structure of a bimodal particle dust cloud may display either an overlapping or a separated configuration, depending on the combustion properties of aluminum particles at different scales. At low percentages of nano particles in the fuel formulation, the flame exhibits a separated spatial structure with a wider flame regime. At higher nano-particle loadings, overlapping flame configurations are observed.  相似文献   

14.
Grain growth behaviour of fine (∼3 μm) and attrition milled nanocrystalline (∼32 nm) titanium powers during sintering have been studied. The activation energies of grain growth (Q g) in fine titanium were found to be 192.9 and 142.4 kJ/mol at lower and higher temperature ranges, respectively. The nanocrystalline titanium showed very low values of Q g (54.6 kJ/mol) at lower temperatures and it increased to 273.2 kJ/mol at higher temperatures. The constant (n) in nano Ti system was found to have unusually very high values of 6.5–8.2. The grain boundary rotation along with the diffusional processes could be the grain growth mechanism in nanocrystalline and in fine titanium powders.  相似文献   

15.
采用密度泛函理论和ReaxFF力场对正戊烷的热分解机理进行研究,分析了热分解的起始反应路径、温度对热分解的影响,并对正戊烷热分解进行了一级动力学研究。结果表明正戊烷热分解的起始反应主要分为两类:一类为碳碳单键断裂,另一类为碳氢键断裂,其中C2-C3键断裂是主要的起始反应路径。正戊烷热分解的主要产物为氢气、甲烷、乙烷、乙烯、乙炔、丙烷和丙烯。经过一级动力学计算得到表观活化能和指前因子分别为224.4 kJ·mol^-1和3.1324×10^14 s^-1。  相似文献   

16.
The dielectric properties of nano Si/C/N composite powder and nano SiC powder at high frequencies have been studied. The nano Si/C/N composite powder and nano SiC powder were synthesized from hexamethyldisilazane ((Me3Si)2NH) (Me:CH3) and SiH4–C2H2, respectively, by a laser-induced gas-phase reaction. The complex permittivities of the nano Si/C/N composite powder and nano SiC powder were measured at a frequency range of 8.2–12.4 GHz. The real part (′) and imaginary part (″) of the complex permittivity, and dissipation factor (tg δ=″/′) of nano Si/C/N composite powder are much higher than those of nano SiC powder and bulk SiC, Si3N4, SiO2, and Si, especially the tg δ. The promising features of nano Si/C/N composite powder would be due to more complicated Si, C, and N atomic chemical environment than in a mixture of pure SiC and Si3N4 phase. The charged defects and quasi-free electrons moved in response to the electric field, diffusion or polarization current resulted from the field propagation. Because there exists graphite in the nano Si/C/N composite powder, some charge carries are related to the sp3 dangling bonds (of silicon and carbon) and unsaturated sp2 carbons. The high ″ and tg δ of nano Si/C/N composite powder were due to the dielectric relaxation. The nano Si/C/N composite powder would be a good candidate for electromagnetic interface shielding material.  相似文献   

17.
一维棒状纳米纤维素及光谱性质   总被引:4,自引:0,他引:4  
Zhang LP  Tang HW  Qu P  Li S  Qin Z  Sun SQ 《光谱学与光谱分析》2011,31(4):1097-1100
采用稀酸预处理纤维素浆粕,结合高压均质的物理方法,制备出一维棒状纳米纤维素.通过傅里叶红外光谱(FTIR),X射线衍射(XRD),热重分析(TGA),原子力显微镜(AFM)和透射电镜(TEM)等方法对纳米纤维素光谱性能和形貌结构进行了表征.结果表明,制得的纳米纤维素与纤维素浆粕具有相同的红外特征官能闭,但分子内氢键缔合作用被部分破坏.纳米纤维素与纤维素浆粕同属于纤维素I的晶形类型,结品度从59%提高至70%,仍保持结晶区与无定形区共存的状态.纳米纤维素的分解温度为330℃,热稳定性低于纤维素浆粕,失重温度从292℃持续至500℃,有两个明显失重阶段.纳米纤维素长度为数百纳米,宽度为数十纳米的棒状形态,易产生团聚现象.  相似文献   

18.
The nano eggshell powder (NESP) has been prepared by ultrasound irradiation and used as a novel and biodegradable catalyst with high catalytic activity and reusability in green synthesis of 2-aminochromenes via condensation of α- or β-phathol, malononitrile and aromatic aldehydes at 120 °C under solvent-free conditions. The reaction proceeds to completion within 10–35 min in 91–98% yield. Nano eggshell catalyst was characterized by scanning electron microscopy, X-ray powder diffraction, IR spectroscopy and X-ray fluorescence, thermal gravimetric, surface area and elemental analyses. In addition, the catalytic activity and chemical structure of nano-sized eggshell were compared with pure CaCO3.  相似文献   

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