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正负磁阻共存的Fe/Bi_(0.5)Sb_(1.5)Te_(3)热电磁薄膜
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作者 柯少秋 叶先峰 +6 位作者 张昊俊 聂晓蕾 陈天天 刘承姗 朱婉婷 魏平 赵文俞 《物理学报》 SCIE EI CAS CSCD 北大核心 2024年第22期257-267,共11页
具有优异电输运性能的热电薄膜是发展高效面内散热技术的关键材料,但是过低的电输运性能是制约其应用的重要难题.热电磁耦合新效应是近年来发展的一种优化综合热电性能的新方法.为了探索热电磁耦合新效应对热电薄膜电输运性能的影响机制... 具有优异电输运性能的热电薄膜是发展高效面内散热技术的关键材料,但是过低的电输运性能是制约其应用的重要难题.热电磁耦合新效应是近年来发展的一种优化综合热电性能的新方法.为了探索热电磁耦合新效应对热电薄膜电输运性能的影响机制,本研究发展了一种球磨分散-丝网印刷-热压固化一体化成型的方法,成功制备了一系列Fe纳米粒子作为第二相的xFe/BST/环氧树脂热电磁薄膜,并重点研究了其热电磁耦合作用及其对电热输运性能的影响规律.研究发现,xFe/Bi_(0.5)Sb_(1.5)Te_(3)(BST)/环氧树脂热电磁薄膜中存在正、负磁阻共存的现象;BST(000l)择优取向因子与正磁阻(MR+)之间呈正比例关系并增加热电磁薄膜的电导率;源于强铁磁性Fe纳米粒子局部磁矩的自旋相关散射的负磁阻(MR-)会增加Seebeck系数.因此,室温附近Fe/BST/环氧树脂热电磁薄膜的功率因子高达2.87 mW/(K^(2)·m),与BST/环氧树脂热电薄膜相比,提高了78%.这些结果表明,热电磁薄膜中正、负磁阻的共存不仅可解耦热电材料中电导率与Seebeck系数之间的耦合关系,还可以为磁纳米粒子诱导优异热电转换性能提供新的物理机制. 展开更多
关键词 p型Bi_(2)te_(3) 基热电磁薄膜 磁各向异性 磁阻 自旋相关散射
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Bi_(2)(Se_(0.53)Te_(0.47))_(3)纳米线的制备及其圆偏振光致电流效应
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作者 冯世尊 俞金玲 《福州大学学报(自然科学版)》 CAS 北大核心 2024年第1期14-19,共6页
采用化学气相沉积法制备Bi_(2)(Se_(0.53)Te_(0.47))_(3)纳米线,利用扫描电子显微镜和X射线能谱仪对其进行表征,并研究样品的圆偏振光致电流效应(circular photogalvanic effect, CPGE).利用1 064 nm激光激发,分别测试激光入射面垂直于... 采用化学气相沉积法制备Bi_(2)(Se_(0.53)Te_(0.47))_(3)纳米线,利用扫描电子显微镜和X射线能谱仪对其进行表征,并研究样品的圆偏振光致电流效应(circular photogalvanic effect, CPGE).利用1 064 nm激光激发,分别测试激光入射面垂直于纳米线和平行于纳米线时的CPGE电流.实验结果表明,测得的CPGE电流主要来自纳米线的拓扑表面态.激光垂直入射纳米线时的CPGE电流不为0,说明CPGE电流来源于纳米线能带的六角翘曲效应.本研究测得的Bi_(2)(Se_(0.53)Te_(0.47))_(3)纳米线的CPGE电流比文献报导的Bi2(Te0.23Se0.77)3纳米线增大2倍以上,这是因为Te组分的增加不但使得费米能级更加靠近狄拉克点,还降低了纳米线中载流子复合的概率,二者共同作用,使得CPGE电流增大. 展开更多
关键词 Bi_(2)(Se_(0.53)te_(0.47))_(3)纳米线 拓扑绝缘体 化学气相沉积 圆偏振光致电流效应
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Sb和Se掺杂量对Bi_(2)Te_(3)材料热电性能的影响研究
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作者 彭星 孙彩云 +4 位作者 唐晶晶 丛大龙 吴永鹏 周富 高诗情 《电工材料》 CAS 2024年第4期29-33,36,共6页
为了明确Sb、Se掺杂量对Bi_(2)Te_(3)材料热电性能的影响规律,采用高温熔炼法制备不同Sb掺杂量的P型Bi_(2)Te_(3)和不同Se掺杂量的N型Bi_(2)Te_(3)材料,通过SEM和EDS分析、热电性能测试等,研究Sb、Se掺杂量对Bi_(2)Te_(3)材料电导率、... 为了明确Sb、Se掺杂量对Bi_(2)Te_(3)材料热电性能的影响规律,采用高温熔炼法制备不同Sb掺杂量的P型Bi_(2)Te_(3)和不同Se掺杂量的N型Bi_(2)Te_(3)材料,通过SEM和EDS分析、热电性能测试等,研究Sb、Se掺杂量对Bi_(2)Te_(3)材料电导率、塞贝克系数、热导率、热电优值等热电性能的影响。结果表明,随着Sb掺杂量的增大,P型Bi_(2)Te_(3)的电导率先增大后减小,赛贝克系数先减小后增大,热导率减小,热电优值先增大后减小;随着Se掺杂量的增大,N型Bi_(2)Te_(3)的电导率先增大后减小,赛贝克系数先减小后增大,热导率减小,热电优值增大。当Sb掺杂量为22.5%时,P型Bi_(2)Te_(3)在175℃下的热电性能更好,热电优值为0.83;当Se掺杂量为5%时,N型Bi_(2)Te_(3)在175℃下的热电性能更好,热电优值为1.33。 展开更多
关键词 Bi_(2)te_(3) 掺杂 电导率 赛贝克系数 热导率 热电优值
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Single-and Two-band Transport Properties Crossover in Bi_(2)Te_(3)Based Thermoelectrics
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作者 MENG Yuting WANG Xuemei +2 位作者 ZHANG Shuxian CHEN Zhiwei PEI Yanzhong 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第11期1283-1291,共9页
Based on Peltier effect,Bi_(2)Te_(3)-based alloy is widely used in commercial solid-state refrigeration at room temperature.The mainstream strategies for enhancing room-temperature thermoelectric performance in Bi_(2)... Based on Peltier effect,Bi_(2)Te_(3)-based alloy is widely used in commercial solid-state refrigeration at room temperature.The mainstream strategies for enhancing room-temperature thermoelectric performance in Bi_(2)Te_(3)focus on band and microstructure engineering.However,a clear understanding of the modulation of band structure and scattering through such engineering remains still challenging,because the minority carriers compensate partially the overall transport properties for the narrow-gap Bi_(2)Te_(3)at room temperature(known as the bipolar effect).The purpose of this work is to model the transport properties near and far away from the bipolar effect region for Bi_(2)Te_(3)-based thermoelectric material by a two-band model taking contributions of both majority and minority carriers into account.This is endowed by shifting the Fermi level from the conduction band to the valence band during the modeling.A large amount of data of Bi_(2)Te_(3)-based materials is collected from various studies for the comparison between experimental and predicted properties.The fundamental parameters,such as the density of states effective masses and deformation potential coefficients,of Bi_(2)Te_(3)-based materials are quantified.The analysis can help find out the impact factors(e.g.the mobility ratio between conduction and valence bands)for the improvement of thermoelectric properties for Bi_(2)Te_(3)-based alloys.This work provides a convenient tool for analyzing and predicting the transport performance even in the presence of bipolar effect,which can facilitate the development of the narrow-gap thermoelectric semiconductors. 展开更多
关键词 thermoelectric material Bi_(2)te_(3)-based alloy two-band model narrow-gap thermoelectric semiconductor
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Bi_(2)Te_(3)薄膜的宽波段自供电柔性光电探测器研究
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作者 刘霄龙 唐涵 +2 位作者 黄茜茜 陈琼 罗斯玮 《湘潭大学学报(自然科学版)》 CAS 2024年第3期66-73,共8页
拓扑绝缘体由于其独特的电学和光学性能在光电器件领域得到了广泛关注.Bi_(2)Te_(3)二维材料是一种拓扑绝缘体,其体态绝缘而表面态导电,可用于高性能光电探测器的新型材料.该文使用气相沉积法分别在SiO_(2)/Si基底和聚酰亚胺(PI)柔性基... 拓扑绝缘体由于其独特的电学和光学性能在光电器件领域得到了广泛关注.Bi_(2)Te_(3)二维材料是一种拓扑绝缘体,其体态绝缘而表面态导电,可用于高性能光电探测器的新型材料.该文使用气相沉积法分别在SiO_(2)/Si基底和聚酰亚胺(PI)柔性基底上生长出了连续、高质量的Bi_(2)Te_(3)薄膜,在此基础上构建了Bi_(2)Te_(3)光电探测器,测试结果表明Bi_(2)Te_(3)薄膜材料具有优越的宽波段光谱响应和自供电性能,并在PI柔性基底上表现出优异的抗疲劳性能,在现代光电探测领域有着非常大的应用潜力. 展开更多
关键词 二维材料 Bi_(2)te_(3) 光电探测器 柔性器件 气相沉积
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Realizing High Thermoelectric Performance in n-Type Se-Free Bi_(2)Te_(3)Materials by Spontaneous Incorporation of FeTe_(2)Nanoinclusions
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作者 Jamil Ur Rahman Woo Hyun Nam +15 位作者 Yong-Jae Jung Jong Ho Won Jong-Min Oh Nguyen Van Du Gul Rahman Víctor M.García-Suárez Ran He Kornelius Nielsch Jung Young Cho Won-Seon Seo Jong Wook Roh Sang-il Kim Soonil Lee Kyu Hyoung Lee Hyun Sik Kim Weon Ho Shin 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第4期344-354,共11页
Bi_(2)Te_(3)-based materials have drawn much attention from the thermoelectric community due to their excellent thermoelectric performance near room temperature.However,the stability of existing n-type Bi_(2)(Te,Se)_(... Bi_(2)Te_(3)-based materials have drawn much attention from the thermoelectric community due to their excellent thermoelectric performance near room temperature.However,the stability of existing n-type Bi_(2)(Te,Se)_(3)materials is still low due to the evaporation energy of Se(37.70 kJ mol^(-1))being much lower than that of Te(52.55 kJ mol^(-1)).The evaporated Se from the material causes problems in interconnects of the module while degrading the efficiency.Here,we have developed a new approach for the high-performance and stable n-type Se-free Bi_(2)Te_(3)-based materials bymaximizing the electronic transport while suppressing the phonon transport,at the same time.Spontaneously generated FeTe_(2)nanoinclusions within the matrix during the melt-spinning and subsequent spark plasma sintering is the key to simultaneous engineering of the power factor and lattice thermal conductivity.The nanoinclusions change the fermi level of the matrix while intensifying the phonon scattering via nanoparticles.With a fine-tuning of the fermi level with Cu doping in the n-type Bi_(2)Te_(3)-0.02FeTe_(2),a high power factor of∼41×10^(-4)Wm^(-1)K^(-2)with an average zT of 1.01 at the temperature range 300-470 K are achieved,which are comparable to those obtained in n-type Bi_(2)(Te,Se)_(3)materials.The proposed approach enables the fabrication of high-performance n-type Bi_(2)Te_(3)-based materials without having to include volatile Se element,which guarantees the stability of the material.Consequently,widespread application of thermoelectric devices utilizing the n-type Bi_(2)Te_(3)-based materials will become possible. 展开更多
关键词 Bi_(2)te_(3) energy harvesting Fete_(2) nanoinclusion n-type materials THERMOELECTRIC
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Ultrahigh thermoelectric properties of p‐type Bi_(x)Sb_(2−x)Te_(3) thin films with exceptional flexibility for wearable energy harvesting
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作者 Zhuang‐Hao Zheng Yi‐Ming Zhong +9 位作者 Yi‐Liu Li Mohammad Nisar Adil Mansoor Fu Li Shuo Chen Guang‐Xing Liang Ping Fan Dongyan Xu Meng Wei Yue‐Xing Chen 《Carbon Energy》 SCIE EI CAS CSCD 2024年第8期273-284,共12页
Use of a flexible thermoelectric source is a feasible approach to realizing selfpowered wearable electronics and the Internet of Things.Inorganic thin films are promising candidates for fabricating flexible power supp... Use of a flexible thermoelectric source is a feasible approach to realizing selfpowered wearable electronics and the Internet of Things.Inorganic thin films are promising candidates for fabricating flexible power supply,but obtaining highthermoelectric‐performance thin films remains a big challenge.In the present work,a p‐type Bi_(x)Sb_(2−x)Te_(3) thin film is designed with a high figure of merit of 1.11 at 393 K and exceptional flexibility(less than 5%increase in resistance after 1000 cycles of bending at a radius of∼5 mm).The favorable comprehensive performance of the Bi_(x)Sb_(2−x)Te_(3) flexible thin film is due to its excellent crystallinity,optimized carrier concentration,and low elastic modulus,which have been verified by experiments and theoretical calculations.Further,a flexible device is fabricated using the prepared p‐type Bi_(x)Sb_(2−x)Te_(3) and n‐type Ag_(2)Se thin films.Consequently,an outstanding power density of∼1028μWcm^(−2)is achieved at a temperature difference of 25 K.This work extends a novel concept to the fabrication of highperformance flexible thin films and devices for wearable energy harvesting. 展开更多
关键词 Bi_(x)Sb_(2−x)te_(3) electrical transport properties FLEXIBILITY THERMOELECTRIC
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3D-printable Boron Nitride/Polyacrylic Hydrogel Composites with High Thermal Conductivities
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作者 DAI Jialei XUE Bingyu +5 位作者 QIAN Qi HE Wenhao ZHU Chenglong LEI Liwen WANG Kun XIE Jingjing 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第5期1303-1310,共8页
Polyacrylic acid(PAA)hydrogel composites with different hexagonal boron nitride(h-BN)fillers were synthesized and successfully 3D-printed while their thermal conductivity was systematically studied.With the content of... Polyacrylic acid(PAA)hydrogel composites with different hexagonal boron nitride(h-BN)fillers were synthesized and successfully 3D-printed while their thermal conductivity was systematically studied.With the content of h-BN increasing from 0.1 wt%to 0.3 wt%,the thermal conductivity of the 3D-printed composites has been improved.Moreover,through the shear force given by the 3D printer,a complete thermal conductivity path is obtained inside the hydrogel,which significantly improves the thermal conductivity of the h-BN hydrogel composites.The maximum thermal conductivity is 0.8808 W/(m·K),leading to a thermal conductive enhancement of 1000%,compared with the thermal conductivity of pure PAA hydrogels.This study shows that using h-BN fillers can effectively and significantly improve the thermal conductivity of hydrogelbased materials while its 3D-printable ability has been maintained. 展开更多
关键词 hydrogel composites boron nitride 3D printing thermal conductivity
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Enhanced Electrical Properties of Bi_(2−x)Sb_(x)Te_(3) Nanoflake Thin Films Through Interface Engineering
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作者 Xudong Wu Junjie Ding +8 位作者 Wenjun Cui Weixiao Lin Zefan Xue Zhi Yang Jiahui Liu Xiaolei Nie Wanting Zhu Gustaaf Van Tendeloo Xiahan Sang 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第6期359-366,共8页
The structure–property relationship at interfaces is difficult to probe for thermoelectric materials with a complex interfacial microstructure.Designing thermoelectric materials with a simple,structurally-uniform int... The structure–property relationship at interfaces is difficult to probe for thermoelectric materials with a complex interfacial microstructure.Designing thermoelectric materials with a simple,structurally-uniform interface provides a facile way to understand how these interfaces influence the transport properties.Here,we synthesized Bi_(2−x)Sb_(x)Te_(3)(x=0,0.1,0.2,0.4)nanoflakes using a hydrothermal method,and prepared Bi_(2−x)Sb_(x)Te_(3) thin films with predominantly(0001)interfaces by stacking the nanoflakes through spin coating.The influence of the annealing temperature and Sb content on the(0001)interface structure was systematically investigated at atomic scale using aberration-corrected scanning transmission electron microscopy.Annealing and Sb doping facilitate atom diffusion and migration between adjacent nanoflakes along the(0001)interface.As such it enhances interfacial connectivity and improves the electrical transport properties.Interfac reactions create new interfaces that increase the scattering and the Seebeck coefficient.Due to the simultaneous optimization of electrical conductivity and Seebeck coefficient,the maximum power factor of the Bi_(1.8)Sb_(0.2)Te_(3) nanoflake films reaches 1.72 mW m^(−1)K^(−2),which is 43%higher than that of a pure Bi_(2)Te_(3) thin film. 展开更多
关键词 Bi_(2)te_(3) nanoflakes interface engineering scanning transmission electron microscopy thermoelectric thin film
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Comprehensive study of the ultrafast photoexcited carrier dynamics in Sb_(2)Te_(3)–GeTe superlattices
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作者 叶之江 金钻明 +7 位作者 蒋叶昕 卢琦 贾梦辉 钱冬 黄夏敏 李舟 彭滟 朱亦鸣 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第7期381-387,共7页
Chalcogenide superlattices Sb_(2)Te_(3)-GeTe is a candidate for interfacial phase-change memory(iPCM) data storage devices.By employing terahertz emission spectroscopy and the transient reflectance spectroscopy togeth... Chalcogenide superlattices Sb_(2)Te_(3)-GeTe is a candidate for interfacial phase-change memory(iPCM) data storage devices.By employing terahertz emission spectroscopy and the transient reflectance spectroscopy together,we investigate the ultrafast photoexcited carrier dynamics and current transients in Sb_(2)Te_(3)-GeTe superlattices.Sample orientation and excitation polarization dependences of the THz emission confirm that ultrafast thermo-electric,shift and injection currents contribute to the THz generation in Sb_(2)Te_(3)-GeTe superlattices.By decreasing the thickness and increasing the number of GeTe and Sb_(2)Te_(3) layer,the interlayer coupling can be enhanced,which significantly reduces the contribution from circular photo-galvanic effect(CPGE).A photo-induced bleaching in the transient reflectance spectroscopy probed in the range of~1100 nm to~1400 nm further demonstrates a gapped state resulting from the interlayer coupling.These demonstrates play an important role in the development of iPCM-based high-speed optoelectronic devices. 展开更多
关键词 Sb_(2)te_(3)/Gete superlattices ultrafast carrier dynamics interfacial phase change memory THz emission spectroscopy transient reflectance spectroscopy
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Multi-scale Modeling and Finite Element Analyses of Thermal Conductivity of 3D C/SiC Composites Fabricating by Flexible-Oriented Woven Process
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作者 Zheng Sun Zhongde Shan +5 位作者 Hao Huang Dong Wang Wang Wang Jiale Liu Chenchen Tan Chaozhong Chen 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2024年第3期275-288,共14页
Thermal conductivity is one of the most significant criterion of three-dimensional carbon fiber-reinforced SiC matrix composites(3D C/SiC).Represent volume element(RVE)models of microscale,void/matrix and mesoscale pr... Thermal conductivity is one of the most significant criterion of three-dimensional carbon fiber-reinforced SiC matrix composites(3D C/SiC).Represent volume element(RVE)models of microscale,void/matrix and mesoscale proposed in this work are used to simulate the thermal conductivity behaviors of the 3D C/SiC composites.An entirely new process is introduced to weave the preform with three-dimensional orthogonal architecture.The 3D steady-state analysis step is created for assessing the thermal conductivity behaviors of the composites by applying periodic temperature boundary conditions.Three RVE models of cuboid,hexagonal and fiber random distribution are respectively developed to comparatively study the influence of fiber package pattern on the thermal conductivities at the microscale.Besides,the effect of void morphology on the thermal conductivity of the matrix is analyzed by the void/matrix models.The prediction results at the mesoscale correspond closely to the experimental values.The effect of the porosities and fiber volume fractions on the thermal conductivities is also taken into consideration.The multi-scale models mentioned in this paper can be used to predict the thermal conductivity behaviors of other composites with complex structures. 展开更多
关键词 3D C/SiC composites Finite element analyses Multi-scale modeling Thermal conductivity
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Investigation of helicity-dependent photocurrent of surface states in(Bi_(0.7)Sb_(0.3))_(2)Te_(3)nanoplate
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作者 喻钦 俞金玲 +3 位作者 陈涌海 赖云锋 程树英 何珂 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第5期573-578,共6页
Helicity-dependent photocurrent(HDPC)of the surface states in a high-quality topological insulator(Bi_(0.7)Sb_(0.3))_(2)Te_(3)nanoplate grown by chemical vapor deposition(CVD)is investigated.By investigating the angle... Helicity-dependent photocurrent(HDPC)of the surface states in a high-quality topological insulator(Bi_(0.7)Sb_(0.3))_(2)Te_(3)nanoplate grown by chemical vapor deposition(CVD)is investigated.By investigating the angle-dependent HDPC,it is found that the HDPC is mainly contributed by the circular photogalvanic effect(CPGE)current when the incident plane is perpendicular to the connection of the two contacts,whereas the circular photon drag effect(CPDE)dominates the HDPC when the incident plane is parallel to the connection of the two contacts.In addition,the CPGE of the(Bi_(0.7)Sb_(0.3))_(2)Te_(3)nanoplate is regulated by temperature,light power,excitation wavelength,the source–drain and ionic liquid top-gate voltages,and the regulation mechanisms are discussed.It is demonstrated that(Bi_(0.7)Sb_(0.3))_(2)Te_(3)nanoplates may provide a good platform for novel opto-spintronics devices. 展开更多
关键词 (Bi_(0.7)Sb_(0.3))_(2)te_(3)nanoplate helicity-dependent photocurrent circular photogalvanic effect ionic liquid gating
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Microstructure,interfacial reaction behavior,and mechanical properties of Ti_(3)AlC_(2)reinforced Al6061 composites
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作者 Zhi-bin LIU Jia-bao BAO +1 位作者 Wen-jie HU Hong YAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第9期2756-2771,共16页
The interfacial reaction behavior of Al and Ti_(3)AlC_(2)at different pouring temperatures and its effect on the microstructure and mechanical properties of the composites were investigated.The results show that the a... The interfacial reaction behavior of Al and Ti_(3)AlC_(2)at different pouring temperatures and its effect on the microstructure and mechanical properties of the composites were investigated.The results show that the addition of3.0 wt.%Ti_(3)AlC_(2)refines the average grain size ofα(Al)in the composite by 50.1%compared to Al6061 alloy.Morphological analyses indicate that an in-situ Al_(3Ti)transition layer of-180 nm in thickness is generated around the edge of Ti_(3)AlC_(2)at 720℃,forming a well-bonded Al-Al_(3Ti)interface.At this processing temperature,the ultimate tensile strength of A16061-3.0 wt.%Ti_(3)AlC_(2)composite is 199.2 MPa,an improvement of 41.5%over the Al6061 matrix.Mechanism analyses further elucidate that 720℃is favourable for forming the nano-sized transition layer at the Ti_(3)AlC_(2)edges.And,the thermal mismatch strengthening plays a dominant role in this state,with a strengthening contribution of about 74.8%. 展开更多
关键词 Al6061 composites Ti_(3)AlC_(2) MICROSTRUCTURE interfacial reaction tensile mechanical properties
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Bi_(2)Te_(3)热电材料生产设备数据采集与监控系统设计研究
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作者 张珂锌 汤辉 《工业控制计算机》 2024年第5期4-6,共3页
碲化铋(Bi_(2)Te_(3))基热电材料因其在室温下具有最高的热电优值(ZT≈1)而被广泛应用,是目前唯一成功商业化的热电材料。为实现Bi_(2)Te_(3)生产数据实时存储,通过集成管控提高设备运行效率,设计了Bi_(2)Te_(3)热电材料生产设备数据采... 碲化铋(Bi_(2)Te_(3))基热电材料因其在室温下具有最高的热电优值(ZT≈1)而被广泛应用,是目前唯一成功商业化的热电材料。为实现Bi_(2)Te_(3)生产数据实时存储,通过集成管控提高设备运行效率,设计了Bi_(2)Te_(3)热电材料生产设备数据采集与监控系统,实现了全工艺过程的实时数据采集和运行监控。经验证,该系统易于搭建,运行稳定,可以满足企业对Bi_(2)Te_(3)热电材料生产设备的集成监控、存储展示及分析验证等多种实际需求。 展开更多
关键词 Bi_(2)te_(3)热电材料 数据采集 组态软件
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Achieving p-type conductivity in ZnO/Bi_(0.5)Sb_(1.5)Te_(3) composites
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作者 Li Yin Lin Sun +1 位作者 Peng Jiang Xinhe Bao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第2期163-167,I0006,共6页
With the rapid exhaustion of fossil energy, the demand for clean and renewable energy is urgently growing. Thermoelectric(TE) materials, which can directly convert waste heat into electrical energy, are attracting gre... With the rapid exhaustion of fossil energy, the demand for clean and renewable energy is urgently growing. Thermoelectric(TE) materials, which can directly convert waste heat into electrical energy, are attracting great attention to address the energy crisis [1–3]. 展开更多
关键词 ZNO Achieving p-type conductivity in ZnO/Bi te_(3)composites
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Thermoelectric properties of Bi_(0.5)Sb_(1.5)Te_3/polyaniline composites prepared by mechanical blending and in-situ polymerization
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作者 胡淑红 裴浩东 赵新兵 《中国有色金属学会会刊:英文版》 CSCD 2001年第6期876-878,共3页
Bi 0.5 Sb 1.5 Te 3/polyaniline composites were prepared by mechanical blending and in situ polymerization, and their transport properties were measured. It was found that for the composites with 1%, 3%, 5% and 7% poly... Bi 0.5 Sb 1.5 Te 3/polyaniline composites were prepared by mechanical blending and in situ polymerization, and their transport properties were measured. It was found that for the composites with 1%, 3%, 5% and 7% polyaniline (mass fraction) respectively, which were prepared by mechanical blending, the power factors decrease by about 30%, 50%, 55% and 65% compared with the Bi 0.5 Sb 1.5 Te 3 samples, which is mainly due to the remarkable decreases of the electrical conductivity. The electrical conductivity and power factor of the composites samples with 7% polyaniline prepared by in situ polymerization are higher by about 65% and 60%, respectively, than that of the corresponding samples prepared by mechanical blending. 展开更多
关键词 thermoelectric property Bi 0.5 Sb 1.5 te 3/polyaniline composite mechanical blending in situ polymerization
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WC-Ni_3Al-B composites prepared through Ni+Al elemental powder route 被引量:6
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作者 龙坚战 张忠健 +4 位作者 徐涛 彭文 魏修宇 陆必志 李仁琼 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第4期847-852,共6页
In order to develop the liquid phase sintering process of WC-Ni3Al-B composites,the preparation process of WC+Ni3Al prealloyed powder by reaction synthesis of carbonyl Ni,analytical purity Al and coarse WC powders wa... In order to develop the liquid phase sintering process of WC-Ni3Al-B composites,the preparation process of WC+Ni3Al prealloyed powder by reaction synthesis of carbonyl Ni,analytical purity Al and coarse WC powders was investigated.DSC and XRD were adopted to study the procedure of phase transformation for the 3Ni+Al and 70%WC+(3Ni+Al) mixed powders in temperature ranges of 550-1200 °C and 25-1400 °C,respectively.The results demonstrate that the formation mechanism of Ni3Al depends on the reaction temperature.Besides WC phase,there exist Ni2Al3,NiAl and Ni3Al intermetallics in the powder mixture after heat treatment at 200-660 °C,while only NiAl and Ni3Al exist at 660-1100 °C.Homogeneous WC+Ni3Al powder mixture can be obtained in the temperature range of 1100-1200 °C.The WC-30%(Ni3Al-B) composites prepared from the mixed powders by conventional powder metallurgy technology show nearly full density and the shape of WC is round.WC-30%(Ni3Al-B) composites exhibit higher hardness of 9.7 GPa,inferior bending strength of 1800 MPa and similar fracture toughness of 18 MPa-m1/2 compared with commercial cemented carbides YGR45(WC-30%(Co-Ni-Cr)). 展开更多
关键词 WC-Ni3Al-B composites Ni3Al intermetallic liquid phase sintering mechanical properties
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Effects of addition of NH_4HCO_3 on pore characteristics and compressive properties of porous Ti-10%Mg composites 被引量:6
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作者 王月勤 陶杰 +1 位作者 张金龙 汪涛 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第5期1074-1079,共6页
Porous Ti-Mg composites were successfully fabricated through powder metallurgy processing with ammonium hydrogen carbonate (NH4HCO3) as a space-holder. The effects of NH4HCO3 on properties of porous composites were ... Porous Ti-Mg composites were successfully fabricated through powder metallurgy processing with ammonium hydrogen carbonate (NH4HCO3) as a space-holder. The effects of NH4HCO3 on properties of porous composites were comprehensively investigated. The pore characteristics and compressive properties of the specimens were characterized by X-ray diffractometry (XRD) and scanning electron microscopy (SEM). The results show that the porosity of the porous composites can be tailored effectively by changing the amount of NH4HCO3 added, and the use of NI-I4HCO3 has no influence on the microstructure and phase constituents of the Ti-10%Mg porous composites. The open porosity and compressive strength as well as compressive elastic modulus vary with the adding amount and particle size of NHaHCO3. When the mass fraction of NHaHCO3 added is 25%, elastic modulus and compressive strength of composites with porosity of around 50% are found to be similar to those of human bone. 展开更多
关键词 Ti-Mg composite NHaHCO3 powder metallurgy POROSITY COMPRESSIVE
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Ternary Ag/AgCl/BiOIO_3 composites for enhanced visible-light-driven photocatalysis 被引量:13
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作者 熊婷 张会均 +1 位作者 张育新 董帆 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2015年第12期2155-2163,共9页
Ternary Ag/AgC l/BiO IO3 composite photocatalysts are prepared by a facile method. Enhanced visible-light absorption and charge carrier separation are achieved after the introduction of Ag/AgC l particles into BiO IO3... Ternary Ag/AgC l/BiO IO3 composite photocatalysts are prepared by a facile method. Enhanced visible-light absorption and charge carrier separation are achieved after the introduction of Ag/AgC l particles into BiO IO3 systems,as revealed by ultraviolet-visible diffuse-reflectance spectrometry,photocurrent response and electrochemical impedance spectroscopy. The Ag/AgC l/BiO IO3 composites are applied to the visible-light photocatalytic oxidization of NO in air and exhibit an enhanced activity for NO removal in comparison with Ag/AgC l and pure BiO IO3. A possible photocatalytic mechanism for Ag/AgC l/BiO IO3 is proposed,which is related to the surface plasmon resonance effects of Ag metal and the effective carrier separation ability of BiO IO3. This work provides insight into the design and preparation of BiO IO3-based materials with enhanced visible-light photocatalysis ability. 展开更多
关键词 Ag/AgCl/BiOIO3 ternary composite Visible-light photocatalysis Nitrogen oxide removal Charge seperation
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Heterogeneous catalytic activation of peroxymonosulfate for efficient degradation of organic pollutants by magnetic Cu^0/Fe_3O_4 submicron composites 被引量:10
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作者 聂刚 黄佳 +3 位作者 胡冶州 丁耀彬 韩小彦 唐和清 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2017年第2期227-239,共13页
Magnetic Cu^0/Fe3O4 submicron composites were prepared using a hydrothermal method and used as heterogeneous catalysts for the activation of peroxymonosulfate(PMS) and the degradation of organic pollutants.The as-pr... Magnetic Cu^0/Fe3O4 submicron composites were prepared using a hydrothermal method and used as heterogeneous catalysts for the activation of peroxymonosulfate(PMS) and the degradation of organic pollutants.The as-prepared magnetic Cu^0/Fe3O4 submicron composites were composed of Cu^0 and Fe3O4 crystals and had an average size of approximately 220 nm.The Cu^0/Fe3O4 composites could efficiently catalyze the activation of PMS to generate singlet oxygen,and thus induced the rapid degradation of rhodamine B,methylene blue,orange Ⅱ,phenol and 4-chlorophenol.The use of0.1 g/L of the Cu^0/Fe3O4 composites induced the complete removal of rhodamine B(20 μmol/L) in15 min,methylene blue(20 μmol/L) in 5 min,orange Ⅱ(20 μmol/L) in 10 min,phenol(0.1mmol/L) in 30 min and 4-chlorophenol(0.1 mmol/L) in 15 min with an initial pH value of 7.0 and a PMS concentration of 0.5 mmol/L.The total organic carbon(TOC) removal higher than 85%for all of these five pollutants was obtained in 30 min when the PMS concentration was 2.5 mmol/L.The rate of degradation was considerably higher than that obtained with Cu^0 or Fe3O4 particles alone.The enhanced catalytic activity of the Cu^0/Fe3O4 composites in the activation of PMS was attributed to the synergistic effect of the Cu^0 and Fe3O4 crystals in the composites.Singlet oxygen was identified as the primary reactive oxygen species responsible for pollutant degradation by electron spin resonance and radical quenching experiments.A possible mechanism for the activation of PMS by Cu^0/Fe3O4 composites is proposed as electron transfer from the organic pollutants to PMS induces the activation of PMS to generate ^1O2,which induces the degradation of the organic pollutants.As a magnetic catalyst,the Cu^0/Fe3O4 composites were easily recovered by magnetic separation,and exhibited excellent stability over five successive degradation cycles.The present study provides a facile and green heterogeneous catalysis method for the oxidative removal of organic pollutants. 展开更多
关键词 Heterogeneous catalysis Magnetic Cu^0/Fe3O4 composite PEROXYMONOSULFAte Singlet oxygen Oxidative degradation
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