Zinc oxide nanoparticles as electron transporting interlayer in organic solar cells

C Liu, C Xiao, W Li - Journal of Materials Chemistry C, 2021 - pubs.rsc.org
Zinc oxide nanoparticles (ZnO NPs) are among the well-known electron transporting layers
(ETLs) in flexible electronics, especially in organic solar cells (OSCs). This is due to their …

Metal-nanostructures–a modern and powerful platform to create transparent electrodes for thin-film photovoltaics

K Zilberberg, T Riedl - Journal of Materials Chemistry A, 2016 - pubs.rsc.org
Thin-film solar technology is the subject of considerable current research. The classical
material platform of amorphous silicon (a-Si) has been complemented by organic solar cells …

High-Performance Polymer Solar Cells with PCE of 10.42% via Al-Doped ZnO Cathode Interlayer.

X Liu, X Li, Y Li, C Song, L Zhu, W Zhang… - … (Deerfield Beach, Fla …, 2016 - europepmc.org
High-performance polymer solar cells incorporating a low-temperature-processed aluminum-
doped zinc oxide (AZO) cathode interlayer are constructed with power conversion efficiency …

Polymer solar cells with efficiency> 10% enabled via a facile solution‐processed Al‐doped ZnO electron transporting layer

LK Jagadamma, M Al‐Senani… - Advanced Energy …, 2015 - Wiley Online Library
A facile and low‐temperature (125° C) solution‐processed Al‐doped ZnO (AZO) buffer layer
functioning very effectively as electron accepting/hole blocking layer for a wide range of …

A Universal Interface Layer Based on an Amine-Functionalized Fullerene Derivative with Dual Functionality for Efficient Solution Processed Organic and Perovskite …

H Azimi, T Ameri, H Zhang, Y Hou… - Advanced Energy …, 2015 - search.ebscohost.com
The successful application of an effective dipolar interface layer based on an amine
functionalized fullerene derivative (DMAPA‐C60) is reported for the perovskite and organic …

Highly robust transparent and conductive gas diffusion barriers based on tin oxide

A Behrendt, C Friedenberger, T Gahlmann… - Advanced …, 2015 - Wiley Online Library
In this work, we will demonstrate that highly robust TCGDBs can be realized by the use of tin
oxide (SnO x). Conductivities of up to 3× 10 2 S cm− 1 and an extremely low WVTR on the …

Water ingress in encapsulated inverted organic solar cells: correlating infrared imaging and photovoltaic performance

J Adams, M Salvador, L Lucera… - Advanced Energy …, 2015 - Wiley Online Library
Understanding the degradation and failure mechanisms of organic photovoltaic devices is a
key requirement for this technology to mature toward a reliable product. Here, an …

Regular organic solar cells with efficiency over 10% and promoted stability by ligand‐and thermal annealing‐free Al‐doped ZnO cathode interlayer

X Liu, HQ Wang, Y Li, Z Gui, S Ming… - Advanced …, 2017 - Wiley Online Library
Landmark power conversion efficiency (PCE) over 10% has been accomplished in the past
year for single‐junction organic solar cell (OSCs), suggesting a promising potential …

The structural, electrical, and optical properties of SnO2 films prepared by reactive magnetron sputtering: Influence of substrate temperature and O2 flow rate

Y Tao, B Zhu, Y Yang, J Wu, X Shi - Materials Chemistry and Physics, 2020 - Elsevier
The electrical and optical properties of SnO 2 films prepared by sputtering are closely
related to the substrate temperature and O 2 flow rate, but the effect of these two parameters …

Vacuum‐free, all‐solution, and all‐air processed organic photovoltaics with over 11% efficiency and promoted stability using layer‐by‐layer codoped polymeric …

X Fan, R Wen, Y Xia, J Wang, X Liu, H Huang, Y Li… - Solar …, 2020 - Wiley Online Library
Nonfullerene organic photovoltaics (OPVs) have achieved a breakthrough in pushing the
efficiency beyond 15%. Although this sheds light on OPV commercialization, the high cost …