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1.
罗派峰  唐新峰  熊聪  张清杰 《物理学报》2005,54(5):2403-2408
用两步固相反应法合成了P型Ba填充方钴矿化合物Ba0.3FeCo3Sb12,并采用放电等离子烧结法(SPS)制备了Ba0.3FeCo3Sb12/多壁碳纳米管复合材料.研究了Ba0.3FeCo3Sb12/多壁碳纳米管复合材料的结构及多壁碳纳米管对其热电性能的影响规律:SEM分析表明多壁碳纳米管比较均匀地分布在Ba0.3FeCo3Sb12基体中;随着碳纳米管添加量的增加,Ba0.3FeCo3Sb12/多壁碳纳米管复合材料的电导率下降、塞贝克系数略微下降、晶格热导率大幅度降低,当碳纳米管含量为5%时其晶格热导率最小;当碳纳米管的含量为3%时,本研究得到的Ba0.3FeCo3Sb12/碳纳米管复合材料的最大ZT值达0.78.  相似文献   

2.
王建立  熊国平  顾明  张兴  梁吉 《物理学报》2009,58(7):4536-4541
用Pt细丝代替已有3ω方法中的薄膜热线,并设计了基于Labview程序的虚拟测量系统,准确、方便地测量了聚丙烯复合材料的热导率. 测量结果发现,多壁碳纳米管/丁苯橡胶/聚丙烯三元复合材料的热导率随着多壁碳纳米管/丁苯橡胶粉末含量的增加变化不大;多壁碳纳米管/聚丙烯复合材料的热导率随着多壁碳纳米管含量增加而增大;复合材料热导率远小于简单混合规则预测的结果,而与有效介质理论符合很好. 关键词: ω法')" href="#">3ω法 多壁碳纳米管 聚丙烯复合材料 热导率  相似文献   

3.
王治龙  郑贵森  王世钦  秦青松  周宏亮  张加驰 《物理学报》2012,61(12):127805-127805
采用高温固相法在1300℃的温度获得了一种新型电子俘获型光存储材料 Sr2SnO4:Sb3+. 结果表明: 208 nm (Sb3+1S01P1)和265 nm (1S03P1)的紫外光是Sr2SnO4:Sb3+ 的最有效信息写入光源; 其发射是覆盖400---700 nm的宽带(3P0,1XXS0), 肉眼可看到淡黄色白光, 色坐标为(0.341, 0.395). 热释光谱研究结果表明: Sr2SnO4:Sb3+ 有分别位于39℃, 124℃, 193℃和310℃的四个热释峰. 其中, 39~℃的热释峰强度很低, 因而Sr2SnO4:Sb3+ 只具有不到140 s的微弱余辉. 而310℃的高温热释峰在空置1天后, 仍能保持约45.6%的初始强度, 并对980 nm的红外光有很好的红外上转换光激励响应. 因此, Sr2SnO4:Sb3+ 是一种具有一定的信息存储应用潜力的新型光存储发光材料.  相似文献   

4.
采用组合材料方法制备并筛选了具有高红外辐射性能的Ba/Fe共掺堇青石固溶体(Ba0.05Fe0.1Mg)2Al4Si5O18. 通过组合溶液喷射法,制备了7×7阵列的样品库,并在不同温度下进行热处理.通过X射线衍射、红外热成像等测试方法分析了Ba2+、Fe3+固溶对堇青石晶格畸变和红外辐射性能的影响. 经过放大制备实验的验证,确定了材料的最佳组分为5%Ba2+和10%Fe3+共固溶的堇青石. 最佳组分样品在100 oC时的红外辐射率在5-24 μm波段均高于0.8.  相似文献   

5.
利用光外差-浓度调制吸收光谱技术测量了b3Πg~a3u+(9,3)带在12065~12445 cm-1的光谱,并研究了He2分子b3Πg(v=9)态与c3g+ 态的预解离相互作用.基于He2分子c3g+ 态的ab initio理论计算势能曲线和b3Πg态的RKR势能曲线,分析了b3Πg(v=9)态的预解离机制,并计算了b3Πg(v=9)态转动能级的预解离线宽,计算结果同实验测量基本一致.  相似文献   

6.
使用对称性匹配簇-组态相互作用方法首次计算了Li2分子自旋一致激发态a3Σ+u和b3Πu的离解能、平衡几何及其谐振频率。使用最小二乘法、利用Murrell-Sorbie函数形式拟合出了Li2分子三重态的第一激发态a3Σ+u 和第二激发态b3Πu的完整势能函数,并计算了这两个态的光谱常数 (Be, αe, ωe 和 ωeχe) 和力常数 (f2, f3和f4)。得到了Murrell-Sorbie函数形式既适用于基态、又适用于激发态的结论。将计算得到的激发态(a3Σ+u和b3Πu)的离解能、平衡几何及其谐振频率与实验结果及其它理论计算结果进行了比较。从比较的结果中可以清楚地看出,本文的计算结果在计算精度方面有很大的改进。  相似文献   

7.
 利用高压方法,合成了富Sb2Te3的AgSbTe2热电材料(AgSbTe2)1-x(Sb2Te3)x (0≤x≤0.3),并对其结构和热电性质进行了研究。结果表明:(AgSbTe2)1-x(Sb2Te3)x样品为近单相的AgSbTe2材料;随着制备压力和Sb2Te3掺杂量的增加,(AgSbTe2)1-x(Sb2Te3)x的电阻率大幅降低;Seebeck系数在高压作用下变小,而少量掺杂Sb2Te3却能提高Seebeck系数;在高压和微量掺杂Sb2Te3的共同作用下,AgSbTe2的功率因子得到了提高;2.0 GPa高压下,制备的Ag0.9Sb1.1Te2.1的品质因子达到0.466,接近Bi2Te3的品质因子。  相似文献   

8.
用高温固相反应法制备了Ba0.98Ce0.8Tm0.2O3-α钙钛矿型氧化物固溶体,粉末X射线衍射表明该固溶体为单相. 用交流阻抗谱技术和气体浓差电池方法研究了样品在500~900 oC、不同气体气氛中的导电性,以及该样品为固体电解质的氢-空气燃料电池性能. 该电池能稳定地工作,在900 oC时,电池的最大功率密度为110.2 mW/cm2,高于以BaxCe0.8RE0.2O3- (x≤1, RE=Y, Eu, Ho)为固体电解质的氢-空气燃料电池的功率密度  相似文献   

9.
吴子华  谢华清 《物理学报》2012,61(7):76502-076502
本文以流变相反应法原位合成了聚对苯撑/LiNi0.5Fe2O4纳米复合热电材料,并对其热电性能进行表征,研究了放电等离子烧结时保温时间对其热电性能的影响.结果发现,复合材料铁氧体颗粒粒径为100---300nm,其外部被一层聚对苯撑膜包覆.电子在Fe2+和Fe3+之间的跳跃机理在铁氧体电导中占主导作用,因此聚对苯撑/LiNi0.5Fe2O4复合材料具有n型导电特性.随着保温时间增加,复合材料电导率基本不变,但热导率逐渐增大且Seebeck系数逐渐减小,导致热电优值系数降低.由于结合了有机物高电导率和低热导率以及无机材料高赛贝克系数的优点,所制备的复合材料热电性能较单一材料有较大提高.  相似文献   

10.
 对利用微波放电直接解离Cl2生成Cl, Cl与HN3反应生成NCl(a )和NCl(b1∑)的过程进行了实验研究。得到了较强的NCl(a 和NCl(b1∑)自发辐射光谱,考察了Cl2流量和He/Cl2配比对NCl(a 和NCl(b1∑)生成的影响。发现对于一定的He流量,Cl2流量对NCl(a 和NCl(b1∑)生成的影响存在一最佳范围,而最佳He/Cl2配比不是一定值,而是随He流量升高而变大,在实验所考察的He流量范围(5~40 L/min)内,最佳He/Cl 2配比在30∶1~100∶1之间。  相似文献   

11.
Polycrystalline sample with (Na0.5Bi0.5)ZrO3 (NBZ) stoichiometry was prepared using a high-temperature solid-state reaction technique. X-ray diffraction (XRD) analyses indicate the formation of a single-phase perovskite-type orthorhombic structure. AC impedance plot is used as tool to analyse the electrical behaviour of the sample as a function of temperature at different frequency. The AC impedance studies revealed the presence of grain boundary effect and evidence of a negative temperature coefficient of resistance (NTCR) character. Pseudo Cole-Cole and complex electric modulus analyses indicated non-Debye-type dielectric relaxation. The AC conductivity obeys the universal power law. The pair approximation type correlated barrier hopping (CBH) model explains the universal behaviour of the s exponent. The apparent activation energy to the conduction process and minimum hopping distance are discussed.  相似文献   

12.
The paper represents a detailed insight into the correlation between changes of the phase composition of crystalline YbxZr1−xO2−x/2 solid solutions and their structural, electrical, mechanical and optical properties. Particularly, the effect of the crystal growth conditions and stabilizer amount in the range of 1.5–13.8 mol% of Yb2O3 are studied in terms of Rietveld analysis of powder X-ray diffraction data, electrical conductivity measured by impedance spectroscopy, absorption coefficient and refractive index measurements, Vickers microhardness (classical technique) as well as the plastic microhardness and effective elastic modulus (DSI—depth-sensing indentation technique). Potential applications of the investigated systems are discussed in view of the results obtained.  相似文献   

13.
Layered misfit cobaltite Bi2Ca2.4Co2Oy has been synthesized by a sol-gel method. This compound exhibits large thermoelectric (TE) power (S300 K∼170 μV K−1), low resistivity (ρ300 K∼42 mΩ cm) and relatively small thermal conductivity (κ300 K∼2.8 W K−1 m−1) at room temperature. Furthermore, the resistivity of this compound displays a metallic behavior above T?∼150 K with a semiconducting behavior below this temperature. This abnormal behavior in resistivity is analogous to those observed in Sr and Ba based misfit cobaltites. The observed features of the TE have been discussed based on the narrow band model.  相似文献   

14.
刘毅 《中国物理 B》2010,19(7):77201-077201
The magnetic,conductivity,and dielectric properties have been investigated in single-phase polycrystalline Y0.1 Co1.9 MnO4.The temperature-dependent magnetisation reveals the ferromagnetic transition in sample at a low temperature (~186 K).Magnetisation as a function of field H (M-H loop) indicated the weak ferromagnetism of the sample at room temperature.The constant ε and dielectric loss tgδ measurements represent a ferroelectric phase transition at a higher temperature (~650 K),while the conductivity shows an insulator-metallic transition.The ferroelectric hysterisis loops and capacitance-voltage measurements confirm the ferroelectric nature of the sample at room temperature.The observed ferromagnetism and ferroelectric nature in this material suggests a potential multiferroic application.  相似文献   

15.
Electrical conductivity and fundamental absorption spectra of monocrystalline Cu7GeS5I were measured in the temperature ranges 95-370 and 77-373 K, respectively. A rather high electrical conductivity (σt=6.98×10−3Ω−1 cm−1 at 300 K) and low activation energy (ΔEa=0.183 eV) was found. The influence of different types of disordering on the Urbach absorption edge and electron-phonon interaction parameters were calculated, discussed and compared with the same parameters in Cu7GeS5I, Cu6PX5I (X=S,Se) and Ag7GeX5I (X=S,Se) compounds. We have concluded that the P→Ge and Cu→Ag cation substitution results in an increase of the electrical conductivity and a decrease of the activation energy. Besides, P→Ge substitution, results in complete smearing and disappearance of the exciton absorption bands and in blue shift of the Urbach absorption edge, an increase of the edge energy width and an electron-phonon-interaction enhancement.  相似文献   

16.
Electrical and electrochemical properties of the 70Li2S·(30 − x)P2S5·xP2S3 and the 70Li2S·(30 − x)P2S5·xP2O5 (mol%) glass-ceramics prepared by the mechanical milling technique were investigated. Glass-ceramics with 1 mol% P2S3 and 3 mol% P2O5 showed the highest conductivity of 5.4 × 10− 3 S cm− 1 and 4.6 × 10− 3 S cm− 1, respectively. Moreover, these glass-ceramics showed higher electrochemical stability than the 70Li2S·30P2S5 (mol%) glass-ceramic. From the XRD patterns of the obtained glass-ceramics, trivalent phosphorus and oxygen were incorporated into the Li7P3S11 crystal. We therefore presume that the Li7P3S11 analogous crystals, which were formed by incorporating trivalent phosphorus and oxygen into the Li7P3S11 crystal, improve the electrical and electrochemical properties of the glass-ceramics. An all-solid-state cell using the 70Li2S·29P2S5·1P2S3 (mol%) glass-ceramic as solid electrolyte operated under the high current density of 12.7 mA cm− 2 at the high temperature of 100 °C. The cell showed an excellent cyclability of over 700 cycles without capacity loss.  相似文献   

17.
The electrical properties of the solid electrolytes Ag7I4VO4-Al2O3 (0-40 mol% Al2O3) are investigated. The electrical conductivity, dielectric constant and dielectric loss are increased by increasing the concentration of Al2O3; showing a maximum at 30 mol% Al2O3. The conductivity is found to be increased by decreasing the particle size of Al2O3. The results are explained using the random resistor network model (RRN). This is due to the formation of a highly conducting interface layer along the matrix-particle interface. This layer is destroyed at concentrations higher than 30 mol% Al2O3.  相似文献   

18.
研究了Ce填充分数对富Co组成的填充式skutterudite化合物:CeyFe1.5Co2.5Sb12(y=0—0.46)的热电传输特性的影响.CeyFe1.5Co2.5Sb12有现为p型传导.霍尔系数RH随Ce填充分数的增加而增加,空穴浓度p和电导率σ随Ce填充分数的增加而减少.泽贝克 系数α随Ce填 关键词: 填充分数 载流子浓度 电导率 泽贝克系数 晶格热导率  相似文献   

19.
I. Kosacki  H. L. Tuller   《Solid State Ionics》1995,80(3-4):223-229
The results of electrical conductivity measurements on SrCe0.95Yb0.05O3 under controlled oxygen partial pressure and temperature are presented. A defect model consistent with experimental results is proposed which provides for PO2−1/4 dependent n-type, Po2-independent oxygen ion and PO2+1/4 dependent p-type conductivity components. The band gap, reduction, oxidation and ion-migration energies are determined from an analysis of the data in terms of the proposed defect model. These results suggest that some earlier data interpreted in terms of protonic conduction may require re-evaluation.  相似文献   

20.
In ionic conducting materials, the crystal structure is closely related to the ionic conductivity. In this research we studied the microscopic features of Li0.5La0.5TiO3 which exhibited a lithium ionic conductivity as high as 1×10−3 Scm−1 at room temperature by XRD, TEM and SIMS. It was found that the superstructure was caused by the ordering of La+3 and vacancy, producing the 2ap×2ap×2ap unit cell. This ordering was found to be regular in microscopic region, but became irregular in macroscopic region. Li+ showed a random distribution which meet the needs for the fast ionic conduction. The second phase was found to be Li2TiO3 which existed in the grain boundary junctions.  相似文献   

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