• 제목/요약/키워드: thermoelectric properties

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원자층 증착법을 이용한 열전 소재 연구 동향 (Recent progress on Performance Improvements of Thermoelectric Materials using Atomic Layer Deposition)

  • 이승혁;박태주;김성근
    • 한국분말재료학회지
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    • 제29권1호
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    • pp.56-62
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    • 2022
  • Atomic layer deposition (ALD) is a promising technology for the uniform deposition of thin films. ALD is based on a self-limiting mechanism, which can effectively deposit thin films on the surfaces of powders of various sizes. Numerous studies are underway to improve the performance of thermoelectric materials by forming core-shell structures in which various materials are deposited on the powder surface using ALD. Thermoelectric materials are especially relevant as clean energy storage materials due to their ability to interconvert between thermal and electrical energy by the Seebeck and Peltier effects. Herein, we introduce a surface and interface modification strategy based on ALD to control the performance of thermoelectric materials. We also discuss the properties of the interface between various deposition materials and thermoelectric materials.

열전소자 구조에 따른 COB LED의 방열 성능 비교 분석 (A Comparative Analysis of Thermal Properties of COB LED based on Thermoelectric Device Structure)

  • 김효준;강은영;임성빈;황근창;김용갑
    • 한국인터넷방송통신학회논문지
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    • 제15권2호
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    • pp.189-194
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    • 2015
  • 본 논문에서는 열전소자의 구조에 따른 COB LED의 방열성능을 비교 분석하였다. COB LED의 발열부분과 접합하는 열전소자는 구리박판 구조와 세라믹 구조의 열전소자를 사용하였다. COB LED와 열전소자의 접합부분은 접촉식 온도계를 통해 온도 분포를 측정하였고, 각각의 열전소자는 0.1A, 0.3A, 0.5A, 0.7A의 전류를 입력시켜서 온도 변화를 측정하였다. COB LED의 열 응집현상이 나타나는 접합부분의 온도는 0.7A를 인가하였을 때 구리박판 구조의 열전소자에서 $59^{\circ}C$로 측정되었고, 세라믹 구조의 열전소자는 $67^{\circ}C$로 나타났으며, 구리박판 열전소자가 세라믹 구조의 열전소자 보다 $9^{\circ}C$가 낮게 측정됨으로써 방열성능이 더 우수함을 보였다.

MOCVD를 이용한 BiSbTe3 박막성장 및 열전소자 제작 (Properties of BiSbTe3 Thin Film Prepared by MOCVD and Fabrication of Thermoelectric Devices)

  • 권성도;윤석진;주병권;김진상
    • 한국전기전자재료학회논문지
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    • 제22권5호
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    • pp.443-447
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    • 2009
  • Bismuth-antimony-telluride based thermoelectric thin film materials were prepared by metal organic vapor phase deposition using trimethylbismuth, triethylantimony and diisopropyltelluride as metal organic sources. A planar type thermoelectric device has been fabricated using p-type $Bi_{0.4}Sb_{1.6}Te_3$ and n-type $Bi_{2}Te_{3}$ thin films. Firstly, the p-type thermoelectric element was patterned after growth of $5{\mu}m$ thickness of $Bi_{0.4}Sb_{1.6}Te_3$ layer. Again n-type $Bi_{2}Te_{3}$ film was grown onto the patterned p-type thermoelectric film and n-type strips are formed by using selective chemical etchant for $Bi_{2}Te_{3}$. The top electrical connector was formed by thermally deposited metal film. The generator consists of 20 pairs of p- and n-type legs. We demonstrate complex structures of different conduction types of thermoelectric element on same substrate by two separate runs of MOCVD with etch-stop layer and selective etchant for n-type thermoelectric material. Device performance was evaluated on a number of thermoelectric devices. To demonstrate power generation, one side of the device was heated by heating block and the voltage output was measured. The highest estimated power of 1.3 ${\mu}m$ is obtained at the temperature difference of 45 K.

로터리형 원자층 증착법을 이용한 Bi-Te계 소결체의 열전 성능 개선 (Thermoelectric Performance Enhancement of Sintered Bi-Te Pellets by Rotary-type Atomic Layer Deposition)

  • 정명준;박지영;은수민;최병준
    • 한국분말재료학회지
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    • 제30권2호
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    • pp.130-139
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    • 2023
  • Thermoelectric materials and devices are energy-harvesting devices that can effectively recycle waste heat into electricity. Thermoelectric power generation is widely used in factories, engines, and even in human bodies as they continuously generate heat. However, thermoelectric elements exhibit poor performance and low energy efficiency; research is being conducted to find new materials or improve the thermoelectric performance of existing materials, that is, by ensuring a high figure-of-merit (zT) value. For increasing zT, higher σ (electrical conductivity) and S (Seebeck coefficient) and a lower κ (thermal conductivity) are required. Here, interface engineering by atomic layer deposition (ALD) is used to increase zT of n-type BiTeSe (BTS) thermoelectric powders. ALD of the BTS powders is performed in a rotary-type ALD reactor, and 40 to 100 ALD cycles of ZnO thin films are conducted at 100℃. The physical and chemical properties and thermoelectric performance of the ALD-coated BTS powders and pellets are characterized. It is revealed that electrical conductivity and thermal conductivity are decoupled, and thus, zT of ALD-coated BTS pellets is increased by more than 60% compared to that of the uncoated BTS pellets. This result can be utilized in a novel method for improving the thermoelectric efficiency in materials processing.

Electrodeposition of Antimony Telluride Thin Films and Composition-Dependent Thermoelectric Characterization

  • Kim, Jiwon
    • 전기화학회지
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    • 제23권1호
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    • pp.18-23
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    • 2020
  • Antimony telluride (SbxTey) thin films were synthesized by an electrodeposition method with a control of applied potential at room temperature. Characterization of electrical and thermoelectric properties such as conductivity, Seebeck coefficient, and power factor (P.F.) were conducted as a function of the chemical composition of the electrodeposited films. Morphology of thin films were dense and uniform and the composition was tailored from 25 to 60 at.% of the Sb content by altering the applied potential from -0.13 to -0.27 V (vs. SCE). The conductivity of the films were ranged from 2 × 10-4 ~ 5 × 10-1 S/cm indicating their amorphous behavior. The meaured Seebeck coefficient of films were relatively high compared to that of bulk single cyrstal SbxTey due to their low carrier concentration. The variation of the Seebeck coefficient of the films was also related to the change of chemical composition, showing the power factor of ~10 ㎼/mK2.

기계적 합금화에 의해 제조된 Skutterudite CoSb3의 열전특성 (Thermoelectric Properties of Skutterudite CoSb3 Fabricated by Mechanical Alloying Process)

  • 최문관;조경원;어순철;김일호
    • 한국재료학회지
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    • 제14권11호
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    • pp.802-806
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    • 2004
  • Skutterudite $CoSb_3$ powders were produced by mechanical alloying (MA) of elemental powders using a nominal stoichiometric composition. Annealing of MA powders under specific condition led to a complete phase transformation to a semiconducting ${\delta}-CoSb_3$. Single phase $CoSb_3$ was successfully produced by vacuum hot pressing using MA powders without subsequent annealing. Phase transformations during mechanical alloying and hot pressing were systematically investigated using XRD and SEM. Thermoelectric properties as a function of temperature were evaluated for the hot pressed specimens and compared with results of analogous studies.

Effect of Pr substitution on the normal-state and superconducting properties of GdBa$_2$(Cu$_{2.9}$Al$_{0.1}$)O$_z$

  • Park, Jung-Rok;Ha, Dong-Han;Lee, Ho-Keum
    • 한국초전도학회:학술대회논문집
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    • 한국초전도학회 2000년도 High Temperature Superconductivity Vol.X
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    • pp.70-75
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    • 2000
  • We report results of a comparative study of the normal-state and superconducting properties in the GdBa$_2$(Cu$_{2.9}$Al$_{0.1}$)O$_z$ system with substitutions by Pr for the Gd and Ba sites. It is observed that, fur both Pr-doped systems, the superconducting transition temperature(T$_c$) decreases almost linearly with the Pr-content, but Pr at Ba sites results in a faster T$_c$ drop than that of Pr at Gd sites. The thermoelectric power measurements indicate that there is a strong correlation between the T$_c$ and the room temperature value of thermoelectric power. The experimental results are discussed in connection with existing models.

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평행유동에서 공랭식 열전모듈 냉각시스템의 성능에 관한 연구 (A Study on Performance of Thermoelectric Air-Cooling System in Parallel Flow)

  • 강상우;신재훈;한훈식;김서영
    • 설비공학논문집
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    • 제23권6호
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    • pp.421-429
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    • 2011
  • Experimental and theoretical studies on cooling performance of two-channel thermoelectric air-cooling system in parallel flow are conducted. The effects of operating temperature to physical properties of thermoelectric module (TEM) are experimentally examined and used in the analysis of an air-cooling system considering thermal network and energy balance. The theoretical predicted temperature variation and cooling capacity are in good agreement with measured data, thereby validating analytic model. The heat absorbed rate increases with increasing the voltage input and decreasing thermal resistance of the system. The power consumption of TEM is linearly proportional to mean temperature differences due to variations of the physical properties on operation temperature of TEM. Furthermore thermal resistance of hot side has greater effects on cooling performance than that of cold side.

Effect of Fe Doping on Thermoelectric Properties of Mechanically Alloyed $CoSb_3$

  • Ur, Soon-Chul;Kwon, Joon-Chul;Kim, Il-Ho
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part2
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    • pp.957-958
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    • 2006
  • Fe doped skutterudite $CoSb_3$ with a nominal composition of $Fe_xCo_{1-x}Sb_{12}(0{\leq}x{\leq}2.5)$ have been synthesized by mechanical alloying (MA) of elemental powders, followed by vacuum hot pressing. Phase transformations during mechanical alloying and vacuum hot pressing were systematically investigated using XRD. Single phase skutterudite was successfully produced by vacuum hot pressing using as-milled powders without subsequent annealing. However, second phase of $FeSb_2$ was found to exist in case of $x\geq2$, suggesting the solubility limit of Fe with Co in this system. Thermoelectric properties as functions of temperature and Fe contents were evaluated for the hot pressed specimens. Fe doping up to x=1.5 with Co in $Fe_xCo_{4-x}Sb_{12}$ appeared to increase thermoelectric figure of merit (ZT) and the maximum ZT was found to be 0.78 at 525K in this study.

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나노 분말을 Spark Plasma 소결해 제조한 PbTe의 열전 특성 (Thermoelectric Properties of PbTe Prepared by Spark Plasma Sintering of Nano Powders)

  • 전은영;김호영;김참;오경식;정태주
    • 한국분말재료학회지
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    • 제25권5호
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    • pp.384-389
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    • 2018
  • Nanoparticles of PbTe are prepared via chemical reaction of the equimolar aqueous solutions of $Pb(CH_3COO)_2$ and Te at $120^{\circ}C$. The size of the obtained particles is 100 nm after calcination in a hydrogen atmosphere. Dense specimens for the thermoelectric characterization are produced by spark plasma sintering of prepared powders at $400^{\circ}C$ to $500^{\circ}C$ under 80 MPa for 5 min. The relative densities of the prepared specimens reach approximately 97% and are identified as cubic based on X-ray diffraction analyses. The thermoelectric properties are evaluated between $100^{\circ}C$ and $300^{\circ}C$ via electrical conductivity, Seebeck coefficient, and thermal conductivity. Compared with PbTe ingot, the reduction of the thermal conductivities by more than 30% is verified via phonon scattering at the grain boundaries, which thus contributes to the increase in the figure of merit.