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题名

Internal nanoscale architecture and charge carrier dynamics of wide bandgap non-fullerene bulk heterojunction active layers in organic solar cells

作者
发表日期
2020-11-28
DOI
发表期刊
ISSN
2050-7488
EISSN
2050-7496
卷号8期号:44页码:23628-23636
摘要

Bulk heterojunction (BHJ) organic solar cells have gained increasing attention in the past few years. In this work, active layers of a wide-bandgap polymer donor with benzodithiophene units PBDB-T-2F and a non-fullerene small molecule acceptor IT-M are assembled into photovoltaic devices with different amounts of solvent additive 1,8-diiodooctane (DIO). The influence of DIO on the nanoscale film morphology and crystalline structure as well as the charge carrier dynamics of the active layers are investigated by combining grazing-incidence small-angle X-ray scattering (GISAXS), grazing-incidence wide-angle X-ray scattering (GIWAXS), X-ray reflectivity (XRR), UV-visible (UV-vis) absorption spectroscopy, X-ray photoelectron spectroscopy (XPS), time-resolved photoluminescence (TRPL) and space charge limited current measurements, which are correlated with the corresponding performance of the solar cells. At 0.5 vol% DIO addition, the wide-bandgap non-fullerene organic solar cells show the best performance due to high open-circuit voltage and short-circuit current resulting from an improved charge carrier management due to the optimal inner nanoscale morphology of the active layers in terms of surface enrichment, crystallinity and crystalline orientation. This journal is

相关链接[Scopus记录]
收录类别
SCI ; EI
语种
英语
学校署名
其他
资助项目
Deutsche Forschungsgemeinschaft (DFG, German Research Foundation)[EXC 2089/1 - 390776260] ; DFG through TUM International Graduate School of Science and Engineering (IGSSE)[GSC 81]
WOS研究方向
Chemistry ; Energy & Fuels ; Materials Science
WOS类目
Chemistry, Physical ; Energy & Fuels ; Materials Science, Multidisciplinary
WOS记录号
WOS:000590158400044
出版者
EI入藏号
20204809524289
EI主题词
Absorption spectroscopy ; Heterojunctions ; Morphology ; Organic solar cells ; Energy gap ; X ray photoelectron spectroscopy ; Open circuit voltage ; X ray scattering ; Charge carriers ; Crystallinity
EI分类号
Electricity: Basic Concepts and Phenomena:701.1 ; Solar Cells:702.3 ; Semiconductor Devices and Integrated Circuits:714.2 ; Nanotechnology:761 ; Chemical Products Generally:804 ; Physical Properties of Gases, Liquids and Solids:931.2 ; High Energy Physics:932.1 ; Crystalline Solids:933.1 ; Materials Science:951
Scopus记录号
2-s2.0-85096422910
来源库
Scopus
引用统计
被引频次[WOS]:15
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/209487
专题工学院_电子与电气工程系
作者单位
1.Physik-Department,Lehrstuhl für Funktionelle Materialien,Technische Universität München,Garching,James-Franck-Str. 1,85748,Germany
2.Physik-Department,Oberflächen- und Grenzflächenphysik,Technische Universität München,Garching,James-Franck-Str. 1,85748,Germany
3.Department of Electrical and Electronic Engineering,Southern University of Science and Technology (SUSTech),Shenzhen,1088 Xueyuan Blvd.,518055,China
4.Deutsches Elektronen-Synchrotron DESY,Hamburg,Notkestr. 85,22607,Germany
5.Department of Applied Sciences and Mechatronics,Munich University of Applied Sciences,München,Lothstr. 34,80335,Germany
6.Department of Fibre and Polymer Technology,KTH Royal Institute of Technology,Stockholm,Teknikringen 56-58,SE-100 44,Sweden
7.Heinz Maier-Leibnitz Zentrum (MLZ),Technische Universität München,Garching,Lichtenbergstr. 1,85748,Germany
推荐引用方式
GB/T 7714
Jiang,Xinyu,Kim,Hongwon,Deimel,Peter S.,et al. Internal nanoscale architecture and charge carrier dynamics of wide bandgap non-fullerene bulk heterojunction active layers in organic solar cells[J]. Journal of Materials Chemistry A,2020,8(44):23628-23636.
APA
Jiang,Xinyu.,Kim,Hongwon.,Deimel,Peter S..,Chen,Wei.,Cao,Wei.,...&Müller-Buschbaum,Peter.(2020).Internal nanoscale architecture and charge carrier dynamics of wide bandgap non-fullerene bulk heterojunction active layers in organic solar cells.Journal of Materials Chemistry A,8(44),23628-23636.
MLA
Jiang,Xinyu,et al."Internal nanoscale architecture and charge carrier dynamics of wide bandgap non-fullerene bulk heterojunction active layers in organic solar cells".Journal of Materials Chemistry A 8.44(2020):23628-23636.
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