차세대 태양전지의 계면 개질 전략
Third-generation photovoltaics are of low cost based on solution processes and are targeting a high efficiency. To meet the commercial demand, however, significant improvements of both efficiency and stability are required. In this sense, interfacial engineering can be useful key to solve these issu...
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Published in | Current Photovoltaic Research Vol. 4; no. 3; pp. 98 - 107 |
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Main Authors | , , |
Format | Journal Article |
Language | Korean |
Published |
한국태양광발전학회
2016
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Subjects | |
Online Access | Get full text |
ISSN | 2288-3274 2508-125X |
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Summary: | Third-generation photovoltaics are of low cost based on solution processes and are targeting a high efficiency. To meet the commercial demand, however, significant improvements of both efficiency and stability are required. In this sense, interfacial engineering can be useful key to solve these issues because trap sites and interfacial energy barrier and/or chemical instability at organic/organic and organic/inorganic interfaces are critical factors of efficiency and stability degradation. Here, we thoroughly review the interfacial engineering strategies applicable to three representative third-generation photovoltaics - organic, perovskite, colloidal quantum dot solar cell devices. |
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Bibliography: | KISTI1.1003/JNL.JAKO201630762633340 |
ISSN: | 2288-3274 2508-125X |