共查询到20条相似文献,搜索用时 15 毫秒
1.
以分析纯Al2O3和MoO3为原料,采用固相法制备出负热膨胀材料Al2Mo3O12陶瓷.利用X射线衍射仪(XRD)、场发射扫描电子显微镜(FE-SEM)和高分辨透射电子显微镜(HR-TEM)对样品的成分、断面形貌和微观结构进行分析;利用变温拉曼光谱仪、差示扫描量热仪( DSC)和热机械分析仪(TMA)对样品的相变温度和热膨胀特性进行分析.实验结果表明:在750℃烧结12h产物为纯度较高的单斜相Al2Mo3O12陶瓷,其断面的晶粒呈不规则的多边形、排列致密,晶粒均匀、大小约为30 μm;相变点为202℃,低频声子模和高频光学声子模对负热膨胀都有贡献.在230 ~ 700℃其平均热膨胀系数为-1.918×10-6/C,700 ~ 900℃的平均热膨胀系数为-4.6×10-/C. 相似文献
2.
以分析纯In2O3和WO3为原料,采用固相反应法制备In2W3O12陶瓷。利用X射线衍射仪、场发射扫描电子显微镜、热重分析仪、差示扫描量热仪和热机械分析仪对样品的物相组成、微观结构、相变和热膨胀特性进行了表征。结果表明:在900℃烧结6h可制备出纯的单斜相In2W3O12陶瓷,In2W3O12陶瓷断面晶粒均匀,平均尺寸为4~6μm。In2W3O12陶瓷在253.34℃发生单斜相到斜方相的相转变,单斜相的In2W3O12陶瓷显示正热膨胀,在27~249℃,其平均热膨胀系数为16.51×10-6℃-1,斜方相的In2W3O12陶瓷显示负热膨胀,在273~700℃,其平均热膨胀系数为-3.00×10-6℃-1。 相似文献
3.
《Ceramics International》2023,49(19):31627-31633
Orthorhombic In0.5Sc1.5Mo3O12 nanofibers were prepared by electrospinning followed by a heat treatment. The effects of post-annealing temperatures on the phase composition, microstructure and morphology were investigated by XRD, SEM, HRTEM and XPS. Negative thermal expansion (NTE) behaviors of the In0.5Sc1.5Mo3O12 nanofibers were analyzed by high-temperature XRD. Results indicate that the as-prepared In0.5Sc1.5Mo3O12 nanofibers show an amorphous structure with smooth and homogeneous shape. The average diameter of the as-prepared In0.5Sc1.5Mo3O12 nanofibers is around 515 nm. Well crystallized orthorhombic In0.5Sc1.5Mo3O12 nanofibers could be prepared after post-annealing at 550 °C for 2 h with an average diameter of about 192 nm. The crystallinity of In0.5Sc1.5Mo3O12 nanofibers gradually improved with the increase of annealing temperature. However, too high post-annealing temperature leads to a damage of sample's fiber structure. The high-temperature XRD results reveal that In0.5Sc1.5Mo3O12 nanofibers show an anisotropic NTE, and the coefficients of thermal expansion (CTEs) along a-axis and c-axis were −5.95 × 10−6 °C−1 and -3.54 × 10−6 °C−1, while the one along b-axis is 5.61 × 10−6 °C−1. The volumetric CTE of In0.5Sc1.5Mo3O12 nanofibers is −3.90 × 10−6 °C−1 and the linear one is 1.3 × 10−6 °C−1 in 25–700 °C. 相似文献
4.
Solid solution formation in the lead‐free binary system (1?x)K0.5Bi0.5TiO3?xBi(Mg0.5Ti0.5)O3 has been studied for compositions x ≤ 0.12. X‐ray powder diffraction shows single‐phase perovskite for x < 0.1, and a mixed phase region between tetragonal and pseudocubic phases for compositions 0.04 ≤ x ≤ 0.06. Large electromechanical strains of ~0.3% at fields of 50 kV/cm are recorded in the mixed phase region, with d33* (Smax/Emax) values of ~600 pm/V. The materials sustain polarization at low electric fields with remnant polarization ~18 μC/cm2 and coercive field ~20 kV/cm for x = 0.06. Relative permittivity‐temperature plots display relaxor characteristics, with peak temperature ~340°C. 相似文献
5.
Enhanced piezoelectric properties and electrocaloric effect in novel lead‐free (Bi0.5K0.5)TiO3‐La(Mg0.5Ti0.5)O3 ceramics 下载免费PDF全文
Feng Li Biao Lu Jiwei Zhai Bo Shen Huarong Zeng Shengguo Lu Giuseppe Viola Haixue Yan 《Journal of the American Ceramic Society》2018,101(12):5503-5513
The crystal structure, electromechanical properties, and electrocaloric effect (ECE) in novel lead‐free (Bi0.5K0.5)TiO3‐La(Mg0.5Ti0.5)O3 ceramics were investigated. A morphotropic phase boundary (MPB) between the tetragonal and pseudocubic phase was found at x = 0.01‐0.02. In addition, the relaxor properties were enhanced with increasing the La(Mg0.5Ti0.5)O3 content. In situ high‐temperature X‐ray diffraction patterns and Raman spectra were characterized to elucidate the phase transition behavior. The enhanced ECE (ΔT = 1.19 K) and piezoelectric coefficient (d33 = 103 pC/N) were obtained for x = 0.01 at room temperature. Meanwhile, the temperature stability of the ECE was considered to be related to the high depolarization temperature and relaxor characteristics of the Bi0.5K0.5TiO3‐based ceramics. The above results suggest that the piezoelectric and ECE properties can be simultaneously enhanced by establishing an MPB. These results also demonstrate the great potential of the studied systems for solid‐state cooling applications and piezoelectric‐based devices. 相似文献
6.
Hongqiang Cui Yongze Cao Yuhang Zhang Tianxiang Peng Long Cao Siying Ran Yichao Wang Danyang Wu Xiangping Li Xizhen Zhang Baojiu Chen 《Ceramics International》2021,47(15):21271-21275
Lu2W2.5Mo0.5O12: Er3+/Yb3+ phosphors were synthesized through high temperature solid state method. Under 980 nm laser excitation, the Lu2W2.5Mo0.5O12: Er3+/Yb3+ compounds show thermal enhancement of up-conversion luminescence (UCL), which is attributed to the lattice contraction and distortion from negative thermal expansion (NTE) of Lu2W2.5Mo0.5O12 host enhancing the energy transfer of Yb3+ to Er3+, eliminating the energy transfer of Er3+ to Er3+ through Er3+ single-doped Lu2W2.5Mo0.5O12 phosphors without thermal enhancement of UCL. The green luminescence intensities at 693 K of the Lu1.98-xW2.5Mo0.5O12: 0.02Er3+, xYb3+ (x = 0.2, 0.3, 0.4) samples are 4.6, 4.3 and 7.0 times as that of 302 K, respectively. And through fluorescence intensity ratio (FIR) technique, the corresponding maximum absolute sensitivities are 0.00741, 0.00744 and 0.00723, respectively. The green monochromaticity of UCL spectra in Er3+/Yb3+ co-doped samples increase with the increasing of temperature, and the possible UCL mechanism with temperature was discussed. The results indicate that the Lu2W2.5Mo0.5O12: Er3+/Yb3+ phosphors can be applied at a high temperature as optical thermometer with a good green monochromaticity. 相似文献
7.
Wanli Zhao Ruzhong Zuo Donggeng Zheng Longtu Li 《Journal of the American Ceramic Society》2014,97(6):1855-1860
The 0.45Bi(Mg0.5Ti0.5)O3–(0.55 ? x)PbTiO3–x(Bi0.5Na0.5)TiO3 (BMT–PT–xBNT) ternary solid solution ceramics were prepared via a conventional solid‐state reaction method; the evolution of dielectric relaxor behavior and the electrostrain features were investigated. The XRD and dielectric measurements showed that all studied compositions own a single pseudocubic perovskite structure and undergo a diffuse‐to‐relaxor phase transition owing to the evolution of the domain from a frozen state to a dynamic state. The formation of the above dielectric relaxor behavior was further confirmed by a couple of measurements such as polarization loops, polarization current density curves, as well as bipolar strain loops. A large strain value of ~0.41% at a driving field of 7 kV/mm (normalized strain d33* of ~590 pm/V) was obtained at room temperature for the composition with x = 0.32, which is located near the boundary between ergodic and nonergodic relaxor. Moreover, this electric field‐induced large strain was found to own a frequency‐insensitive characteristic. 相似文献
8.
A single-phase material (HfMg)(WO4 )3 with an orthorhombic structure, A2 (WO4 )3 -type tungstate, has been successfully prepared for the first time by the calcination of HfO2 , MgO, and WO3 , substituting Hf4+ and Mg2+ for A3+ cations in A2 (WO4 )3 . The new material shows a negative thermal expansion coefficient of approximately −2 ppm/°C from room temperature to 800°C. The mechanism of negative thermal expansion is assumed to be the same as that of Sc2 (WO4 )3 . 相似文献
9.
Temperature‐stable dielectric and energy storage properties of La(Ti0.5Mg0.5)O3‐doped (Bi0.5Na0.5)TiO3‐(Sr0.7Bi0.2)TiO3 lead‐free ceramics 下载免费PDF全文
Nianshun Zhao Huiqing Fan Li Ning Jiangwei Ma Yunyan Zhou 《Journal of the American Ceramic Society》2018,101(12):5578-5585
A new type of (0.7?x)Bi0.5Na0.5TiO3‐0.3Sr0.7Bi0.2TiO3‐xLaTi0.5Mg0.5O3 (LTM1000x, x = 0.0, 0.005, 0.01, 0.03, 0.05 wt%) lead‐free energy storage ceramic material was prepared by a combining ternary perovskite compounds, and the phase transition, dielectric, and energy storage characteristics were analyzed. It was found that the ceramic materials can achieve a stable dielectric property with a large dielectric constant in a wide temperature range with proper doping. The dielectric constant was stable at 2170 ± 15% in the temperature range of 35‐363°C at LTM05. In addition, the storage energy density was greatly improved to 1.32 J/cm3 with a high‐energy storage efficiency of 75% at the composition. More importantly, the energy storage density exhibited good temperature stability in the measurement range, which was maintained within 5% in the temperature range of 30‐110°C. Particularly, LTM05 show excellent fatigue resistance within 106 fatigue cycles. The results show that the ceramic material is a promising material for temperature‐stable energy storage. 相似文献
10.
Qi Wang Jun Chen Longlong Fan Huidong Song Wei Gao Yangchun Rong Laijun Liu Liang Fang Xianran Xing 《Journal of the American Ceramic Society》2013,96(12):3793-3797
A new lead‐free BNT‐based piezoelectric ceramics of (1 ? x)Bi0.5Na0.5TiO3–xBi(Al0.5Ga0.5)O3 (x = 0, 0.02, 0.03, 0.04, and 0.05) were synthesized using a conventional ceramic fabrication method. Their structures and electrical properties were investigated. All the samples show a typical ferroelectric P(E) loops and S(E) curves at room temperature. The optimal properties are obtained at the composition of the x = 0.03. The substitution of Bi(Al0.5Ga0.5)O3 enhances piezoelectric constant and increases Curie temperature from 58 pC/N and 310°C of pure BNT to 93 pC/N and 325°C of the x = 0.03. The temperature‐dependent P(E) loops and S(E) curves of 0.97BNT–0.03BAG indicate that phase transition from ferroelectric to antiferroelectric takes place over a very wide temperature region from 80°C to 180°C. The results show that the introduction of BAG improves the electrical properties of BNT. 相似文献
11.
Zhenyong Cen Changrong Zhou Huabin Yang Qin Zhou Weizhou Li Chunle Yan Lei Cao Jun Song Ling Peng 《Journal of the American Ceramic Society》2013,96(7):2252-2256
The 0.72Bi(Fe1?xAlx)O3–0.28BaTiO3 (x = 0, 0.01, 0.03, 0.05, and 0.07, abbreviated as BFAx–BT) lead‐free high‐temperature ceramics were prepared by the conventional ceramic processing. Systematic investigation on the microstructures, crystalline structures, dielectric and piezoelectric properties, and high‐temperature stability of piezoelectric properties was carried out. The crystalline structures of BFAx–BT ceramics evolve from rhombohedral structure with x < 0.01 to the coexistence of rhombohedral structure and pseudocubic phases with x ≈ 0.01, finally to pseudocubic phases when x > 0.03. Remarkably high‐temperature stability with near‐zero temperature coefficient of piezoelectric properties (TCkp), together with improved piezoelectric properties has been achieved for x = 0.01 BFAx–BT ceramics. The BFAx–BT(x = 0.01) ceramics simultaneously show the excellent piezoelectric properties of d33 = 151 pC/N, kp = 0.31 and super‐high‐temperature stability of Td = 420°C, TCkp = 1 × 10?4. It is considered that the observed strong piezoelectricity and remarkably high‐temperature stability should be ascribed to the phase coexistence of rhombohedral and pseudocubic phases. The rhombohedral phases have a positive TCkp value and the pseudocubic phases possess a negative TCkp value. Thus, the TCkp value of BFAx–BT ceramics can be tuned by composition of x. 相似文献
12.
Qi Wang Jun Chen Longlong Fan Laijun Liu Liang Fang Xianran Xing 《Journal of the American Ceramic Society》2013,96(4):1171-1175
Lead‐free BNT‐based piezoceramics, (1?x)Bi0.5Na0.5TiO3–xBi(Mg0.5Ti0.5)O3 [(1?x)BNT–xBMT] (0.00 ≤ x ≤ 0.06) binary system, were synthesized using a conventional ceramic fabrication method. Effect of Bi(Mg0.5Ti0.5)O3 (BMT) substitution on room temperature (RT) crystal structure, and temperature dependence of electric properties were investigated. The XRD indicates that a pure perovskite phase is formed. The introduction of BMT decreases EC of BNT from 7.3 to 4.0 kV/mm, and increases d33 from 58 pC/N to 110 pC/N for the x = 0.05. The system shows a typical ferroelectric (FE) polarization loop P(E) and butterfly bipolar strain‐electric S(E) curve at RT. For the composition of 0.95BNT–0.05BMT antiferroelectric (AFE) phase appears near 80°C, characterized by a constricted P(E) loop and altered bipolar S(E) butterfly, and gradually prevails with increasing temperature. Temperature dependence of dielectric constant shows that TC increases from 310°C for pure BNT to 352°C for the x = 0.05. The results indicate that the piezoelectric properties of BNT have been improved by means of Bi(Mg0.5Ti0.5)O3 substitution. 相似文献
13.
Low‐Temperature Dielectric Relaxations Associated with Mixed‐Valent Structure in Na0.5Bi0.5Cu3Ti4O12
Xiaohong Sun Chunchang Wang Guojing Wang Changmei Lei Teng Li Lina Liu 《Journal of the American Ceramic Society》2013,96(5):1497-1503
We, herein, present comparative investigations on the Na0.5Bi0.5Cu3Ti4O12 ceramic samples with and without 10 mol% excess of Na/Bi. The samples were prepared by the standard solid‐state reaction technique. The dielectric properties of the sample were investigated in the temperature (93–320 K) and frequency (20 Hz–10 MHz) windows. Three thermally activated dielectric relaxations observed in Na0.5Bi0.5Cu3Ti4O12 with the activation energies of 0.104, 0.267, and 0.365 eV for the low‐, middle‐, and high‐temperature dielectric relaxations, respectively. Only the low‐temperature relaxation was observed in both Na and Bi excessive samples. X‐ray photoemission spectroscopy results revealed the mixed‐valent structures of Cu+/Cu2+ and Ti3+/Ti4+ in Na0.5Bi0.5Cu3Ti4O12 sample, but only Ti3+/Ti4+ in Na and Bi excessive samples. Our results showed that the dielectric properties of the investigated samples are strongly linked with these mixed‐valent structures. The high‐ and low‐temperature relaxations were attributed to be a polaron‐type relaxation due to localized carriers hopping between Cu+/Cu2+ and Ti3+/Ti4+, respectively. The middle‐temperature relaxation is suggested to be a dipole‐type relaxation caused by the defect complex of bismuth and oxygen vacancies. 相似文献
14.
15.
以分析纯Y2O3、La2O3和MoO3为原料,采用固相反应法制备Y2–xLaxMo3O12(0≤x≤2.00)系列陶瓷。利用X射线衍射仪、场发射扫描电子显微镜、能谱仪、热重分析仪和热机械分析仪对样品的物相组成、微观结构、吸湿性和热膨胀特性进行了表征。结果表明:在750℃烧结10 h可制备得到Y2–xLaxMo3O12(0≤x≤2.00)系列陶瓷;Y2–xLaxMo3O12(0≤x≤2.00)陶瓷断面晶粒呈不规则多边形,为多孔结构。热重分析发现:Y2Mo3O12陶瓷易吸湿,掺入La后吸湿现象消失。在178~600℃测试温度范围内,随La掺入量增加,Y2–xLaxMo3O12(0≤x≤2.00)系列陶瓷样品的热膨胀系数呈增大趋势。 相似文献
16.
以分析纯Er2O3和WO3为原料,采用固相法制备Er2W3O12陶瓷,并利用X射线衍射仪(XRD)、场发射扫描电镜(FESEM)和热重分析仪(TG)对其结构组分、断面形貌和吸湿特性进行表征.采用热膨胀仪和变温XRD对Er2W3O12陶瓷的负热膨胀特性进行表征.结果表明:在950 ℃烧结6 h制得的Er2W3O12陶瓷结构致密.Er2W3O12材料在室温下容易吸湿,在120 ℃完全失去吸湿水,表现为正交相的Er2W3O12陶瓷,具有良好的负热膨胀性能,其在138~700 ℃的平均热膨胀系数为-7.94×10-6 K-1.变温XRD分析发现:Er2W3O12陶瓷沿三个晶轴方向均表现为负热膨胀,在100~600 ℃温度区间内,Er2W3O12陶瓷的热膨胀系数为-7.81×10-6 K-1. 相似文献
17.
Yan Li Feifei Wang Xiang Ye Yiqun Xie Yanxue Tang Dazhi Sun Wangzhou Shi Xiangyong Zhao Haosu Luo 《Journal of the American Ceramic Society》2014,97(11):3615-3623
A ternary solid solution (1 ? x)(0.88Bi0.5Na0.5TiO3–0.12BaTiO3)‐xBi(Zn0.5Ti0.5)O3 (BNBZT, BNBZTx) was designed and fabricated using the traditional solid‐state reaction method. The temperature and composition dependence of dielectric, ferroelectric, piezoelectric, and fatigue properties were systematically investigated and a schematic phase diagram was proposed. The substitution with Bi(Zn0.5Ti0.5)O3 was found to shift the phase transition (ferroelectric tetragonal to relaxor pseudocubic phase) to lower temperatures. At a critical composition x of 0.05, large electric‐field‐induced strain response with normalized strain Smax/Emax as high as 526 pm/V was obtained under a moderate field of 4 kV/mm around room temperature. The strain exhibited good temperature stability within the temperature range of 25°C–120°C. In addition, excellent fatigue‐resistant behavior was observed in the proposed BNBZT solid solution after 106 bipolar cycles. These give the BNBZT system great potential as environmental friendly solid‐state actuator. 相似文献
18.
Piezoelectric properties of (Na0.5K0.5)(Nb1‐xSbx)O3‐SrTiO3 ceramics with tetragonal‐pseudocubic PPB structure 下载免费PDF全文
Dae‐Hyeon Kim Tae‐Gon Lee Sung‐Hoon Cho Ku‐Tak Lee Tae‐Ho Lee Youn‐Woo Hong Chang‐Hyo Hong Jeong‐Seog Kim Sahn Nahm 《Journal of the American Ceramic Society》2018,101(9):3997-4010
CuO‐added 0.96(Na0.5K0.5)(Nb1‐xSbx)O3‐0.04SrTiO3 ceramics sintered at the low temperature of 960°C for 10 hours showed dense microstructures and high relative densities. The specimens with 0.0 ≤ x ≤ 0.04 had orthorhombic‐tetragonal polymorphic phase boundary (PPB) structure. Tetragonal‐pseudocubic PPB structure was observed in specimens with 0.05 ≤ x ≤ 0.07, while the specimen with x = 0.08 has a pseudocubic structure. The structural variation in the specimens is explained by the decreases in the orthorhombic‐tetragonal transition temperature and Curie temperature with the addition of Sb5+ ions. The specimens with 0.05 ≤ x ≤ 0.07, which have tetragonal‐pseudocubic PPB structure, had large electric field‐induced strains of 0.14%‐0.016%. Moreover, these specimens also showed increased d33 values between 280 pC/N and 358 pC/N. In particular, the specimen with x = 0.055 showed particularly enhanced piezoelectric properties: d33 of 358 pC/N, kp of 0.45, and the electric field‐induced strain of 0.16% at 4.5 kV/mm. 相似文献
19.
Wangfeng Bai Yanlong Bian Jigong Hao Bo Shen Jiwei Zhai 《Journal of the American Ceramic Society》2013,96(1):246-252
The (1?x) (Bi0.5Na0.5)TiO3?xBa(Al0.5Ta0.5)O3((1?x)BNT‐xBAT) lead‐free piezoceramics was fabricated using a conventional solid‐state reaction method. The temperature and composition‐dependent strain behavior, dielectric, ferroelectric (FE), piezoelectric, and pyroelectric properties have been systematically investigated to develop lead‐free piezoelectric materials with large strain response for actuator application. As the BAT content increased, the FE order is disrupted resulting in a degradation of the remanent polarization, coercive field, and the depolarization temperature (Td). A large strain of 0.36% with normalized strain d33* = 448pm/V was obtained for the optimum composition x = 0.045 at room temperature. The bipolar and unipolar strains for the compositions x = 0.035 and x = 0.04 reach almost identical maximum values when the temperature is in the vicinity of their respective depolarization temperature (Td). The Raman‐spectra analysis, macroscopic properties, thermal depolarization results, and temperature‐dependent relationships of both polarization and strain demonstrated that the origin of the large strain response for this investigated system is attributed to a field‐induced relaxor to FE phase transformation. 相似文献
20.
Chad Johnson Stefan Ottiger Ronny Pini Eric M. Gorman Joseph G. Nguyen Eric J. Munson Marco Mazzotti A. S. Borovik Bala Subramaniam 《American Institute of Chemical Engineers》2009,55(4):1040-1045
Co(salen) [cobaltous bis(salicylaldehyde)ethylenediamine] complexes are well‐known O2 carriers in solution. In the solid phase, these complexes exhibit some O2 binding but detailed studies have been complicated because few of the known polymorphs of Co(salen) actually bind O2. The O2 binding results for nanoparticulate Co(salen) are presented in this study. Rod‐shaped Co(salen) nanoparticles, roughly 100 nm in diameter, were recrystallized by spraying a methylene chloride solution of commercially obtained Co(salen) into supercritical carbon dioxide. Temperature‐programmed desorption, thermogravimetric analysis, and a Rubotherm magnetic suspension balance measurements reveal a reversible O2 uptake of ~1.51 mmol/(g nanoparticles) at 25°C, consistent with a binding stoichiometry involving a bridging peroxo unit between two Co centers. In contrast, no measurable O2 uptake was observed with the commercial Co(salen). These results clearly show the potential for bottom‐up design of nanoparticulate metal complexes for enhanced O2 storage and other applications. © 2009 American Institute of Chemical Engineers AIChE J, 2009 相似文献