Scopus
YÖKSİS DOI Eşleşti
SJR Q1
Low Work Function Lacunary Polyoxometalates as Electron Transport Interlayers for Inverted Polymer Solar Cells of Improved Efficiency and Stability
ACS Applied Materials and Interfaces · Temmuz 2017
Özet
Effective interface engineering has been shown to play a vital role in facilitating efficient charge-carrier transport, thus boosting the performance of organic photovoltaic devices. Herein, we employ water-soluble lacunary polyoxometalates (POMs) as multifunctional interlayers between the titanium dioxide (TiO2) electron extraction/transport layer and the organic photoactive film to simultaneously enhance the efficiency, lifetime, and photostability of polymer solar cells (PSCs). A significant reduction in the work function (WF) of TiO2 upon POM utilization was observed, with the magnitude being controlled by the negative charge of the anion and the selection of the addenda atom (W or Mo). By inserting a POM interlayer with ∼10 nm thickness into the device structure, a significant improvement in the power conversion efficiency was obtained; the optimized POM-modified poly[[4,8-bis[(2-ethylhexyl)oxy]benzo[1,2-b:4,5-b′]dithiophene-2,6-diyl][3-fluoro-2-[(2- 33 ethylhexyl)carbonyl]thieno[3,4-b]thiophenediyl]]:[6,6]-phenyl-C70 butyric acid methyl ester (PTB7:PC70BM)-based PSCs exhibited an efficiency of 8.07%, which represents a 21% efficiency enhancement compared to the reference TiO2 cell. Similar results were obtained in POM-modified devices based on poly(3-hexylthiophene) (P3HT) with electron acceptors of different energy levels, such as PC70BM or indene-C60 bisadduct (IC60BA), which enhanced their efficiency up to 4.34 and 6.21%, respectively, when using POM interlayers; this represents a 25-33% improvement as compared to the reference cells. Moreover, increased lifetime under ambient air and improved photostability under constant illumination were observed in POM-modified devices. Detailed analysis shows that the improvements in efficiency and stability synergistically stem from the reduced work function of TiO2 upon POM coverage, the improved nanomorphology of the photoactive blend, the reduced interfacial recombination losses, the superior electron transfer, and the more effective exciton dissociation at the photoactive layer/POM/TiO2 interfaces.
YÖKSİS Kayıtları
Low Work Function Lacunary Polyoxometalates as Electron Transport Interlayers for Inverted Polymer Solar Cells of Improved Efficiency and Stability
ACS Applied Materials Interfaces · 2017 SCI-Expanded
Prof. Dr. MUSTAFA ERSÖZ →
YÖKSİS Kayıtları — ISSN Eşleşmesi
Bu dergide (ISSN eşleşmesi) kurumun 17 kaydı bulundu.
YÖKSİS Kayıtları — ISSN Eşleşmesi
Bu dergide (ISSN eşleşmesi) kurumun 17 kaydı bulundu.
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Makale Bilgileri
Toplam Atıf
26 atıf
· Scopus
ISSN19448244
Yayın TarihiTemmuz 2017
Cilt / Sayfa9 · 22773-22787
Scopus ID2-s2.0-85024105563
Kurumlar
Department of Physics
Cambridge United Kingdom
National and Kapodistrian University of Athens
Athens Greece
National Centre for Scientific Research "DEMOKRITOS"
Athens Greece
National Technical University of Athens (NTUA)
Athens Greece
Selçuk Üniversitesi
Selçuklu Turkey
University of Chester
Chester United Kingdom
University of Patras
Rio Greece
Havuzumuzdaki Atıflar 0
Bu makaleye, sistemimizdeki Scopus veritabanında bulunan 0 makale atıf yapmıştır. Scopus genel atıf sayısı: 26.
Bu makaleye, kendi Scopus havuzumuzdaki başka bir makaleden atıf kaydı bulunmuyor.
Scimago Dergi (ISSN Eşleşmesi)
ACS Applied Materials and Interfaces
Q1
OA
SJR Skoru1,614
H-Index356
YayıncıAmerican Chemical Society
ÜlkeUnited States
Materials Science (miscellaneous) (Q1)
Medicine (miscellaneous) (Q1)
Nanoscience and Nanotechnology (Q1)
Metrikler
26
Atıf