문승재 교수
Seung Jae Moon
한양대학교 기계공학부 · 공학
연구실 소개
문승재 교수의 연구실은 전자 구조 분석과 광학 특성 측정을 기반으로 한 희토류 및 전이금속 산화물, 나노소재, 반도체 편성 물질의 전자적 성질을 연구합니다. 특히 2차원 구조를 가진 퍼보스카이트 계 화합물과 철계 페로판티드에서의 스핀-페일러스 전이, 강한 전자 상호작용에 기인한 비평균장 거동을 규명하고자 하며, 고성능 전자소자 응용을 위한 박막 실리콘 및 나노입자 소재의 열처리 공정 최적화도 함께 다룹니다. 이들의 연구는 나노전자소자, 에너지 효율 소자, 핵심 소재의 안정성 향상에 기여하고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15We investigated the electronic structures of the two-dimensional layered perovskite ${\mathrm{Sr}}_{2}M{\mathrm{O}}_{4}$ ($M=4d$ Ru, $4d$ Rh, and $5d$ Ir) using optical spectroscopy and polarization-dependent O $1s$ x-ray absorption spectroscopy. While the ground states of the series of compounds are rather different, their optical conductivity spectra $\ensuremath{\sigma}(\ensuremath{\omega})$ exhibit similar interband transitions, indicative of the common electronic structures of the $4d$ and
This letter introduces a dual-type proximity sensor and a control strategy for a robot manipulator to realize safe human-robot interactions (HRI) by using the sensor. Safety is an essential condition for HRI in practical scenarios. To achieve this condition, information about the relationship between an external objects and the robot is required. To obtain this information, we employ a dual-type proximity sensor, which consists of capacitive and inductive transducers and can detect the distance
We investigate the electronic structure of ${\text{EuFe}}_{2}{\text{As}}_{2}$ using optical spectroscopy and density-functional calculations. At low temperature we observe the evolution of two gaplike features, one having a weak-coupling mean-field behavior and another with strongly nonmean-field behavior. Using band-structure calculations, we identify the former with a spin-Peierls-type partial gap in ${d}_{yz}$ bands and the latter with the transition across the large exchange gap in ${d}_{xz}
Recrystallization of thin amorphous silicon (a-Si) films can yield polysilicon (p-Si) material with functional properties suitable for fabrication of electronic devices, including high definition large area active matrix liquid crystal displays. Pulsed laser-effected melting and recrystallization is exceptionally effective since it avoids damage to the underlying insulator structure. The ensuing phase transformations and ultimately the quality of the produced p-Si material strongly depend on the
During the thermal sintering of metal nanoparticles (NPs) the process temperature plays the most important role in the outcome of the sintering results and the selection of a suitable substrate. Here, temperature calculation during pulsed laser sintering of silver (Ag) nanoparticles (NPs) inkjet-printed on glass substrates is presented. During the pulsed laser sintering of Ag NPs, a minimum line resistivity less than twice the bulk silver resistivity was obtained within around 52 s under a laser
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