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1.
通过对低压化学气相沉积制得的CoSb3纳米薄膜在300~800K温度范围内的热电性能测试,发现其电阻率较其他单晶CoSb3块状样品低一个量级,热导率值在1.08~4.05 Wm-1 K-1之间,比单晶CoSb3低得多.这表明纳米结构导致热导率显著降低,最高热电优值在773K出现且为0.114.这种纳米薄膜材料在研制新型高效热电半导体方面极具应用前景.  相似文献   

2.
CoSb_3/C_(60)复合材料的固相反应合成和热电性能   总被引:1,自引:0,他引:1       下载免费PDF全文
用固相反应法和脉冲电流直接通电烧结法制备了CoSb3 C6 0 复合材料 ,其组分通过粉末x射线衍射法确定 ,SEM分析表明C6 0 颗粒是均匀地分布在CoSb3基体中 .在 30 0— 80 0K范围内测量了材料的电导率、赛贝克系数和热导率 ,研究了纳米颗粒的尺寸和分布状态对复合材料热电性能的影响 .外加的C6 0 纳米颗粒在高温时降低了复合材料的晶格热导率 ,而对电传输性能影响较小 ,从而有效地提高了复合材料的热电性能 .与CoSb3相比 ,CoSb3 6 5 4 ? 0复合材料的ZT值提高了 4 0 % .  相似文献   

3.
晶粒尺寸对CoSb3化合物热电性能的影响   总被引:3,自引:0,他引:3       下载免费PDF全文
系统地研究了晶粒尺寸对CoSb3化合物热电性能的影响规律,结果表明晶粒尺寸对CoSb3化合物的晶格热导率κp、电导率σ、能隙宽度Eg和Seebeck系数α有显著影响.当晶粒尺寸由微米尺度减小到纳米尺度时,晶格热导率κp显著降低,Seebeck系数α有较大幅度的增加,能隙宽度Eg变宽,电导率σ有一定程度的下降.平均晶粒尺寸为200nm的CoSb3化合物在温度为700K时,ZT值达到0.43,比平均晶粒尺寸为5000 nm的试样增加了4倍.  相似文献   

4.
CoSb3纳米热电材料的制备及热传输特性   总被引:6,自引:0,他引:6       下载免费PDF全文
余柏林  唐新峰  祁琼  张清杰 《物理学报》2004,53(9):3130-3135
以Sb,Co为起始原料,采用固相反应法合成了CoSb3.通过高能球磨制得CoSb3纳米粉末,用放电等离子烧结(SPS)方法制备出最小平均晶粒尺寸为150nm的块体材料.研究了晶粒尺寸与热传输性能之间的关系:CoSb3化合物结构纳米化对其晶格热导率κL有显著影响,当晶粒尺寸由微米尺度减小到纳米尺度,晶格热导率κL显著降低,但对载流子热导率κc的影响不甚显著.CoSb3化合物的热导率κ随晶粒尺寸的减小而降 低主要是由于晶格热导率κL随晶粒尺寸的减小而降低所致. 关键词: 纳米 Skutterudite 制备 热传输特性  相似文献   

5.
以Sb ,Co为起始原料 ,采用固相反应法合成了CoSb3.通过高能球磨制得CoSb3纳米粉末 ,用放电等离子烧结(SPS)方法制备出最小平均晶粒尺寸为 1 5 0nm的块体材料 .研究了晶粒尺寸与热传输性能之间的关系 :CoSb3化合物结构纳米化对其晶格热导率κL 有显著影响 ,当晶粒尺寸由微米尺度减小到纳米尺度 ,晶格热导率κL 显著降低 ,但对载流子热导率κc 的影响不甚显著 .CoSb3化合物的热导率κ随晶粒尺寸的减小而降低主要是由于晶格热导率κL 随晶粒尺寸的减小而降低所致  相似文献   

6.
将热电材料制作成纳米柱状薄膜结构是一种理论上能有效降低热导率、从而大幅提升热电优值的操控手段。但是随之而来的问题是纳米柱状薄膜热导率的精确获取困难,因为常规的热物性测试手段已无法适用于该类表面多孔、厚度为微米量级结构热输运特性的表征。本文提出利用3ω方法可实现Bi_2Te_3取向纳米柱状薄膜热导率实验表征的测量结构,并且获得了纳米柱状薄膜的热导率和热扩散率值。该方法有望用于微米厚纳米柱状薄膜结构热输运性能的实验评价。  相似文献   

7.
研究了致密度对填充skutterudite化合物La0.75Fe3CoSb12热电性能的影响.La0.75Fe3CoSb12表现为p型传导,载流子迁移率随着致密度的增加而升高.由于样品中空洞的散射作用,致使电阻率ρ随着致密度的降低而升高,同时造成热导率κ的下降,但塞贝克系数α与致密度关系不大,致密度造成电阻率ρ升高的比率与热导率κ下降的比率相当,致密度不同的样品具有相当的ZT值.致密度对填充式skutterudite化合物La0.75Fe3CoSb12ZT值关系影响不明显.  相似文献   

8.
吴子华  谢华清*  曾庆峰 《物理学报》2013,62(9):97301-097301
ZnO是一类具有潜力的热电材料, 但其较大声子热导率影响了热电性能的进一步提高. 纳米复合是降低热导率的有效途径. 本文以醋酸盐为前驱体, 溶胶-凝胶法制备了Ag-ZnO纳米复合热电材料. 扫描电镜照片显示ZnO颗粒呈现多孔结构, Ag纳米颗粒分布于ZnO的晶粒之间. Ag-ZnO纳米复合材料的电导率比未复合ZnO材料高出100倍以上, 而热导率是未复合ZnO材料的1/2. 同时, 随着Ag添加量的增加, 赛贝克系数的绝对值逐渐减小. 综合以上原因, 添加7.5%mol Ag的Ag-ZnO纳米复合材料在700 K时的热电优值达到0.062, 是未复合ZnO材料的约25倍. 在ZnO基体中添加导电金属颗粒有利于产生导电逾渗通道, 提高材料体系的电导率, 但同时导致赛贝克系数的绝对值减小. 总热导率的差异来源于声子热导率的差异. 位于ZnO晶界的纳米Ag颗粒, 有利于降低声子热导率. 关键词: 热电材料 ZnO 纳米复合 热导率  相似文献   

9.
目前,低维材料是热电领域研究的热点,因为块体材料低维化后热电性能会得到显著的改善.块体材料低维化有很多方法,本文基于半导体微加工和聚焦离子束技术制备了尺寸可控的Si微/纳米带,并通过微悬空结构详细研究了不同尺寸Si微/纳米带的热电性能.实验发现:随着Si微/纳米带宽度的减小,材料的热导率发生了显著的降低,从体硅的148 W/(m·K)降低到17.75 W/(m·K)(800 nm);材料的Seebeck系数低于相应的体Si值.热导率的降低主要来源于声子边界散射的增加,这显著抑制了Si材料中声子的传输行为,从而影响热能的传输和转换.在373 K时,800 nm宽的Si微/纳米带的ZT值约达到了0.056,与体硅相比增大了约6倍.聚焦离子束加工技术为将来Si材料提高热电性能提供了新的制备方案,这种技术也可以应用于其他材料低维化的制备.  相似文献   

10.
超低温下金纳米薄膜导电和导热性质的实验研究   总被引:1,自引:0,他引:1  
受到晶界和表面对电子散射的影响,金属纳米薄膜在导电和导热方面表现出与体材料不同的性质。实验研究了厚度为76 nm的金薄膜在不同温度(3~240K)下的导电和导热特性。结果表明薄膜电导率和热导率均大大低于体材料值;薄膜和体材料的电导率随温度变化趋势相同,热导率的变化趋势相反;薄膜的Lorenz数大于体材料值,Wiedemann-Franz定理不成立。  相似文献   

11.
Two-dimensional scanning of a 0.6328 mum guided-light beam has been realized using noncolinear acousto-optic (AO) coplanar Bragg diffraction together with colinear AO guided-mode to substrate radiation-mode conversion in a Z-cut Xpropagation LiNbO3 proton-exchanged (PE) waveguide. The two surface acoustic (SAW) waves utilized are at the center frequencies of 500 and 200 MHz, propagating in the Y and X axes, respectively. Two-dimensional scanning of approximately 720 resolvable light beam spots, namely, 18 40 (horizontal vertical) scanning, has been demonstrated using a light beam of 1.0 mm aperture. The total number of resolvable beam spots can be greatly increased from 720 by simply utilizing SAW transducers of larger bandwidth and a light beam of greater aperture. It should also be possible to significantly increase the diffraction efficiency from 3 % by optimizing the parameters of the PE waveguide and the SAWs.  相似文献   

12.
A simple technique of pulse compression, based on the linear chirp compensation of self-phase modulation (SPM) spectra in dispersion shifted fibers, is demonstrated. The optimization procedure is carried out, for a short span of a single-mode fiber, using a parabolic law, which describes the behavior of the squared output pulse width versus the pump peak power in the case of Gaussian pulses. The experimental results give a minimum pulse duration of 233 fs, which is in good agreement with the model. Shorter and coherent pulses, down to 90 fs, have been obtained by inserting an interference filter at the optical output.  相似文献   

13.
Results of a study of the effect of γ-radiation on the spectral luminescence properties of cadmium tungstate crystals doped with silver, bismuth, and molybdenum cations are presented. Spectral characteristics of the nondnnnoped crystals are briefly described. Absorption and photo and X-ray luminescence spectra of the crystals taken before and after exposure to γ-radiation (5.5·104 Gy) are compared. It is found that the spectral characteristics of the crystals doped with silver, bismuth, and molybdenum cations do not change markedly after the exposure. The relation between the type of impurity-induced defects, individual characteristics of the impurity cations, and the character of the effect of γ-radiation on the spectral luminescence properties of impure crystals is analyzed (preliminarily). Translated from Zhurnal Prikladnoi Spektroskopii, Vol. 64, No. 1, pp. 55–60, January–February, 1997.  相似文献   

14.
The Shanghai Synchrotron Radiation Facility(SSRF)booster ring,a full energy injector for the storage ring,is deigned to accelerate the electron beam energy from 150MeV to 3.5GeV that demands high extraction efficiency at the extraction energy with low beam loss rate when electrons are ramping.Closed orbit distortion(COD)caused by bending magnet field uniformity errors which affects the machine performance harmfully could be effectively reduced by bending magnet location sorting.Considering the affections of random errors in measurement,both ideal sorting and realistic sorting are studied based on measured bending magnet field uniformity errors and one reasonable combination of bending magnets which can reduce the horizontal COD by a factor of 5is given as the final installation sequence of the booster bending magnets in this paper.  相似文献   

15.
16.
A multi-conjugate adaptive optics (MCAO) can offer a possibility of widening field of view (FOV) characterized by the isoplanatic angle, and the choose of conjugate height becomes a basic problem for MCAO, which influences the size of iosplanatic angle. Considering the application of lidar, the isoplanatic angle's expressions of two deformable mirrors (DMs) MCAO for uplink and downlink are deduced. The effects of conjugate heights for dual-conjugate AO are thoughtfully discussed, and the isoplanatic angles are further analyzed. The results show that the isopanatic angle varies with the conjugate height and reaches the maximum as the conjugate height is at the optimal altitude. Moreover, the optimal conjugate height changes with the propagation distance.  相似文献   

17.
Due to the limit of response speed of the present single-photon detector, the code rate is still too low to come into practical use for the present quantum key distribution (QKD) system.A new idea is put up to design a quick single-photon detector.This quick single-photon detector is composed of a multi-port optic-fiber splitter and many avalanche photo diodes (APDs).Au of the ports with APDs work on the time division and cooperate with a logic discriminating and deciding unit driven by the clock signal.The operation frequency lies on the number N of ports, and can reach N times of the conventional single-photon detector.The single-photon prompt detection can come true for high repetition-rate pulses.The applying of this detector will largely raise the code rate of the QKD, and boost the commercial use.  相似文献   

18.
19.
We measure the waveform and phase curves of short optical pulses before and after transmission over different lengths of fibers by use of the pulse analyzer with the frequency-resolved optical gating (FROG),and numerically simulate pulse evolution under the experimental conditions.The nonlinear coefficient of the fiber is given by comparing the experimental results with the numerical ones.Difference between the experiment and numerical simulation is analyzed.  相似文献   

20.
Resonance scattering of elastic spherical shell and cylindrical shell while the surrounding fluid medium has absorption is studied. The normal mode solution derived using exact elastic theory and the separation of variables is still applicable. However, the scattering form function has to be modified for the absorbing medium, otherwise the unreasonable result would be obtained. The backscattering form function in the absorbing medium is redefined, and the form function of elastic spherical and cylindrical shell with vacuum or solid matter filled is calculated in various absorption conditions. The results show that the absorption of surrounding fluid leads to notable attenuation of the coincidence resonances in the mid-frequency, but it has a little influence on the low-frequency resonance scattering induced by the filler inside the shell.  相似文献   

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