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2016 ; 6
(ä): 27773
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Stable and null current hysteresis perovskite solar cells based nitrogen doped
graphene oxide nanoribbons hole transport layer
#MMPMID27277388
Kim J
; Mat Teridi MA
; Mohd Yusoff AR
; Jang J
Sci Rep
2016[Jun]; 6
(ä): 27773
PMID27277388
show ga
Perovskite solar cells are becoming one of the leading technologies to reduce our
dependency on traditional power sources. However, the frequently used component
poly(3,4-ethylenedioxythiophene) polystyrene sulfonate ( PEDOT: PSS) has several
shortcomings, such as an easily corroded indium-tin-oxide (ITO) interface at
elevated temperatures and induced electrical inhomogeneity. Herein, we propose
solution-processed nitrogen-doped graphene oxide nanoribbons (NGONRs) as a hole
transport layer (HTL) in perovskite solar cells, replacing the conducting polymer
PEDOT: PSS. The conversion efficiency of NGONR-based perovskite solar cells has
outperformed a control device constructed using PEDOT: PSS. Moreover, our
proposed NGONR-based devices also demonstrate a negligible current hysteresis
along with improved stability. This work provides an effective route for
substituting PEDOT: PSS as the effective HTL.