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나노구조를 기반으로 하는 Bi<sub>2</sub>Te<sub>3</sub> 소결과 그 시간에 따른 열전 특성
유수산나,강민석,김도경,문경숙,구상모,Yu, Susanna,Kang, Min-Seok,Kim, Do-Kyung,Moon, Kyung-Sook,Toprak, M.S.,Koo, Sang-Mo 한국전기전자재료학회 2014 전기전자재료학회논문지 Vol.27 No.9
Thermoelectric materials have been the topic of intensive research due to their unique dual capability of directly converting heat into electricity or electrical power into cooling or heating. Bismuth telluride ($Bi_2Te_3$) is the best-known commercially used thermoelectric material in the bulk form for cooling and power generation applications In this work we focus on the large scale synthesis of nanostructured undoped bulk nanostructured $Bi_2Te_3$ materials by employing a novel bottom-up solution-based chemical approach. Spark plasma sintering has been employed for compaction and sintering of $Bi_2Te_3$ nanopowders, resulting in relative density of $g{\cdot}cm^{-3}$ while preserving the nanostructure. The average grain size of the final compacts was obtained as 200 nm after sintering. An improved NS bulk undoped $Bi_2Te_3$ is achieved with sintered at $400^{\circ}C$ for 4 min holding time.
강준구(J. G. Kang),정인식(I. S. Chung),구정우(J. W. Koo),고중혁(J. H. Koh),구상모(S. M. Koo),남송민(S. M. Nam),하재근(J. G. Ha) 한국자기학회 2008 韓國磁氣學會誌 Vol.18 No.5
Epitaxial L1? FePd (001) thin films were successfully manufactured by sputtering deposition method. The structure and magnetic properties of FePd thin films were characterized as a function of Fe compositions. It was found that the long-range ordering parameter had a maximum for the stoichiometric composition, whereas the magnetic anisotropy had a maximum as the Fe content is decreased to slightly above the stoichiometric composition. This indicates that the stoichiometry is directly contributed to the chemical ordering and the magnetic anisotropy. These results imply that nonstoichiometric FePd compositions, with a slight excess of Pd, may in fact be preferred for applications that require high magnetic anisotropy.
다양한 하지층이 이중층의 응집현상에 미치는 영향에 관한 연구
하재호,류동훈,임현우,정지민,최호준,홍인기,고중혁,구상모,가미코 마사오,하재근,Ha, J.H.,Ryu, D.H.,Im, H.W.,Jung, J.M.,Choi, H.J.,Hong, I.G.,Koh, J.H.,Koo, S.M.,Kamiko, M.,Ha, J.G. 한국진공학회 2012 Applied Science and Convergence Technology Vol.21 No.5
단결정 MgO (001) 기판에 DC 마그네트론 스퍼터로 하지층과 상지층으로 구성된 이중층을 증착, 열처리 온도와 시간을 고정시키고 이중층의 두께를 변화시켜 응집현상을 제어하여 자기구조화, 나노 구조화된 박막을 제작하였다. 진행한 실험에선 기존에 연구되었던 단층에서의 응집현상이 아닌 하지층과 상지층으로 구성된 이중층의 응집현상으로 나노 점을 형성하였다. 하지층은 Ti, Cr, Co 그리고 상지층은 Ag를 증착하였다. Atomic force microscopy를 통하여 하지층의 물질에 따라 나노 점의 형성 여부가 관찰되었고 형성된 나노 점의 형상이 다르게 나타난 것을 확인하였다. 결과적으로 이중층의 응집현상을 이용하여 나노 점을 제작할 때 가장 적합한 하지층의 물질은 Ti로 확인하였다. 또한 Ti/Ag 시료는 X-ray Diffraction 분광법을 통하여 Ag는 기판으로 사용된 MgO의 (001) 방향을 따라서 에피택셜하게 성장한 것을 확인하였다. We have deposited the bilayer consisted of the underlayer and the overlayer by using DC magnetron sputter on Single crystal MgO (001) substrate. This bilayer was fabricated at fixed annealing temperature and time. We have controlled agglomeration effect by changing of the bilayer thickness. Finally, we have made the self-organization and nano-structured film. In this processing, we have made nano-dot which consists of the underlayer and the overlayer, unlike the existing method called the agglomeration effect in the single layer. The underlayer has deposited using Ti, Cr and Co. And the overlayer has deposited with Ag. Through the analysis of Atomic force microscopy (AFM), the microstructure of underlayer is observed by AFM to confirm the formation of nano-dot. As the nano-dot through above processing, we have found that the nano-dot has the different shape. As a result, when we manufactured nano-dot through the agglomeration effect of bi-layer, the best matching material is Ti for underlayer. And also, we have found that MgO/Ti/Ag samples have been grown expitaxially toward the direction of MgO (001) by X-ray Diffraction analysis.