양자점(Quantum Dot) Solar Cell

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양자점(Quantum Dot) Solar Cell에 대한 자료입니다.
목차
Why Solar Cell?
Why QDSC ?
How it works?
QDSC mechanism
PROBLEM &DEVELPOMENT
설계
ZnO
ZnO nanowire Solar Cell
Effect of ZnO nanowire
Vapor-liquid-solid (VLS) growth
Why PbSe?
PbSe quantom dot(QD)
Surfactant-free PbSe QD
Synthesis of surfactant-free PbSe QD
LAS Deposition of PbSe Quantum Dots
Effect of LAS method on QD
Effect of Plume temperature
Effect of LAS method on electrical conductivity
Conclusion
Reference
본문내용
Why Solar Cell?

에너지원이 청정 무제한
지속가능한 에너지원
무인화 가능
유지, 보수이외의 비용 無


참고문헌
[1]www.pv-magazine.com
[2] solarfollowers.tistory.com/592
[3]www. azonano.com
[4]www. cnx.org
[5]양자점태양전지, KOSEN, 김영국
[6]Quantum dot solar cell, KAERI, 이일형
[7] Depleted-heterojunction colloidal quantum dot solar cells, Andras G. Pattantyus-Abraham, et al. ACS NANO, VOL. 4, NO.6, pp 3374, 2010
[8]nanotechweb.org/cws/article/tech/50591
[9] Synthesis, Characterization, and Applications of ZnO Nanowires
[10]Nanoforest of Hydrothermally Grown Hierarchical ZnO Nanowires for a High Efficiency Dye Sensitized Solar Cell
[11]Fabrication and Characterization of Surfactant-Free PbSe Quantum Dot Films and PbSe Polymer Hybrid Structures
[12]Enhanced charge-transport in surfactant-free PbSe quantum dot films grown by a laser-assisted spray process
[13] Nanostructured photoelectrodes for dye-sensitized solar cells , Qifeng Zhang, Guozhong Cao, Nanotoday
[14] Investigation of the fill factor of dye-sensitized solar cell based on ZnO nanowire Arrays, Yongshu Tiana,b, Chenguo Hua, Qing Wua, Xiaohui Wua, Xiaoyan Li a, Muhammad Hashima, Applied Surface Science
[15]CuInSe2 nanocrystals/CdS quantumdots/ZnOnanowirearraysheterojunction for photovoltaicapplications, Jin Zhang,WenxiuQue n, FengyuShen,YulongLiao, Solar Energy Materials & Solar Cells
[16] Nanowire-quantum-dot solar cells and the influence of nanowire length on the charge collection efficiency, Kurtis S. Leschkies, Alan G. Jacobs, David J. Norris, and Eray S. Aydil, Applied Physics Letters