성시준
Sung, Shi-JoonDivision of Energy & Environmental Technology
학력
- 2000 ~ 2004한국과학기술원 박사
- 1998 ~ 2000한국과학기술원 석사
- 1994 ~ 1998한국과학기술원 학사
경력
- 2004 ~ 2007삼성전자 LCD총괄 액정공정 / 책임연구원
수상실적
- 2009공로상
- "Highly Efficient Bifacial Narrow Bandgap Ag-CuInSe2 Solar Cells on ITO", Ali, Amanat. (2025-06). Highly Efficient Bifacial Narrow Bandgap Ag-CuInSe2 Solar Cells on ITO. Advanced Energy Materials, 15(23). doi: 10.1002/aenm.202500899
- "Advanced interfacial charge carrier transport enabling the improvement of open-circuit voltage in Sb2Se3 solar cells", Lim, Geumha. (2025-04). Advanced interfacial charge carrier transport enabling the improvement of open-circuit voltage in Sb2Se3 solar cells. Journal of Materials Chemistry A, 13(15), 10622–10629. doi: 10.1039/d5ta00683j
- "Enhanced P-type conductivity in Sb2Se3 through alkali and alkaline earth metal doping", Cho, Eunkyung. (2025-03). Enhanced P-type conductivity in Sb2Se3 through alkali and alkaline earth metal doping. Journal of Materials Chemistry A, 13(12), 8507–8517. doi: 10.1039/d4ta08978b
- "Reducing carrier recombination loss by suppressing Sn loss and defect formation via Ag doping in Cu2ZnSn(S,Se)4 solar cells", Kim, Seong Yeon. (2024-11). Reducing carrier recombination loss by suppressing Sn loss and defect formation via Ag doping in Cu2ZnSn(S,Se)4 solar cells. Energy & Environmental Science, 17(22), 8609–8620. doi: 10.1039/d4ee02485k
- "Enhancing the open-circuit voltage in narrow-bandgap CuInSe2 solar cells via local contact passivation with Al2O3", Jeon, Dong-Hwan. (2024-03). Enhancing the open-circuit voltage in narrow-bandgap CuInSe2 solar cells via local contact passivation with Al2O3. Journal of Science: Advanced Materials and Devices, 9(1). doi: 10.1016/j.jsamd.2023.100648
- "CZTS Solar Cell Characteristics using ZnO,S Buffer Layer", Yang, Kee-Jeong. (2017-11-22). CZTS Solar Cell Characteristics using ZnO,S Buffer Layer. ICAE 2017.
- "The properties of flexible CZTS thin-film solar cell", Sim, Jun-Hyoung. (2017-11-22). The properties of flexible CZTS thin-film solar cell. ICAE 2017.
- "Atomic layer deposition Sb2S3 solar cells with Li doped hole transfer layer", Lee, Sang Ju. (2017-11-10). Atomic layer deposition Sb2S3 solar cells with Li doped hole transfer layer. 2017 한국공업화학회 추계 총회 및 학술대회.
- "Photovoltaic applications of tin sulfide thin films grown by atomic layer deposition", Lee, Sang-Ju. (2017-09-06). Photovoltaic applications of tin sulfide thin films grown by atomic layer deposition. 한국신재생에너지학회 2017 추계학술대회, 287–287.
- "Atomic Layer Deposition of ZrO2 thin films Using CpZrNMe23 and Water", Lee, Sang Ju. (2017-06-27). Atomic Layer Deposition of ZrO2 thin films Using CpZrNMe23 and Water. 2017 International Forum on Functional Materials IFFM2017, 210–210.
연구 뉴스
- Next-Generation Solar Cells Become More Powerful with Silver (Ag) Doping Technology! 2024-10-24
- 차세대 태양전지, 은(Ag) 도핑 기술로 더 강력해지다! 2024-10-21
- DGIST Identifies What Causes Electron-Hole Separation in Thin-Film Solar Cells to Increase Solar Cell Efficiency! 2024-04-22
- 박막태양전지 내 전자-정공 분리 원인 규명해 태양 전지 효율 높인다! 2024-04-17
- Increased Efficiency for Solar Cells with Depth-Based Property Analysis 2023-05-17
연구분야
미래유망 신기술(6T)
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50000. NT(나노기술)
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50200. 에너지
50211. 에너지소재기술
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국가과학기술표준분류
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EF. 에너지/자원
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EF06. 전력시스템
EF0601. 태양광
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ED. 전기/전자
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ED04. 반도체 소자·회로
ED0402. 화합물소자
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EB. 재료
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EB02. 세라믹재료
EB0209. 광/전자세라믹스
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EC. 화공
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EC02. 나노 화학공정기술
EC0201. 나노소재 합성기술
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NC. 화학
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NC08. 전기화학
NC0804. 에너지 변환/저장 전기화학
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12대 국가전략기술 분야
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반도체·디스플레이
반도체·디스플레이 소재·부품·장비