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Graphene and its derivatives for solar cells application
Graphene has played the role of game-changer for conductive transparent devices indebted
to its unique two dimensional (2D) structures and gained an exceptional opportunity to be …
to its unique two dimensional (2D) structures and gained an exceptional opportunity to be …
Interfacial materials for organic solar cells: recent advances and perspectives
Z Yin, J Wei, Q Zheng - Advanced Science, 2016 - Wiley Online Library
Organic solar cells (OSCs) have shown great promise as low‐cost photovoltaic devices for
solar energy conversion over the past decade. Interfacial engineering provides a powerful …
solar energy conversion over the past decade. Interfacial engineering provides a powerful …
N-type self-doped hyperbranched conjugated polyelectrolyte as electron transport layer for efficient nonfullerene organic solar cells
D Zhou, W You, F Yang, R Chen, H Xu… - … Applied Materials & …, 2021 - ACS Publications
The electron transport layer (ETL) exerts a dramatic influence on the power conversion
efficiency (PCE) of the nonfullerene organic solar cells (NOSCs). Currently, the majority of …
efficiency (PCE) of the nonfullerene organic solar cells (NOSCs). Currently, the majority of …
ZnO anchored graphene hydrophobic nanocomposite-based bulk heterojunction solar cells showing enhanced short-circuit current
Hydrophobic and surfactant-free ZnO nanoparticles and ZnO decorated graphene
nanocomposite (Z@ G) with narrow and uniform size distribution were synthesized by a time …
nanocomposite (Z@ G) with narrow and uniform size distribution were synthesized by a time …
Enhanced photovoltaic performance of inverted hybrid bulk-heterojunction solar cells using /reduced graphene oxide films as electron transport layers
In this study, we investigated inverted hybrid bulk-heterojunction solar cells with the
following configuration: fluorine-doped tin oxide (FTO)| TiO 2/RGO| P 3 HT: PC 61 BM| V 2 O …
following configuration: fluorine-doped tin oxide (FTO)| TiO 2/RGO| P 3 HT: PC 61 BM| V 2 O …
Alcohol-soluble n-type conjugated polyelectrolyte as electron transport layer for polymer solar cells
A novel alcohol-soluble n-type conjugated polyelectrolyte (n-CPE) poly-2, 5-bis (2-
octyldodecyl)-3, 6-bis (thiophen-2-yl)-pyrrolo [3, 4-c] pyrrole-1, 4-dione-alt-2, 5-bis [6-(N, N …
octyldodecyl)-3, 6-bis (thiophen-2-yl)-pyrrolo [3, 4-c] pyrrole-1, 4-dione-alt-2, 5-bis [6-(N, N …
2-Dimensional graphene as a route for emergence of additional dimension nanomaterials
Dimension has a different and impactful significance in the field of innovation, research and
technologies. Starting from one-dimension, now, we all are moving towards 3-D visuals and …
technologies. Starting from one-dimension, now, we all are moving towards 3-D visuals and …
Recent Advances in Graphene-Enabled Materials for Photovoltaic Applications: A Comprehensive Review
Graphene's two-dimensional structural arrangement has sparked a revolutionary
transformation in the domain of conductive transparent devices, presenting a unique …
transformation in the domain of conductive transparent devices, presenting a unique …
PEIE capped ZnO as cathode buffer layer with enhanced charge transfer ability for high efficiency polymer solar cells
In this work, a cathode buffer layer (CBL) with higher charge transfer ability was fabricated
by using polyethylenimine ethoxylated (PEIE) covered ZnO nanoparticles (NPs)(ZnO/PEIE) …
by using polyethylenimine ethoxylated (PEIE) covered ZnO nanoparticles (NPs)(ZnO/PEIE) …
In situ formation of ZnO in graphene: a facile way to produce a smooth and highly conductive electron transport layer for polymer solar cells
A novel electron transport layer (ETL) based on zinc oxide@ graphene: ethyl cellulose
(ZnO@ G: EC) nanocomposite is prepared by in situ formation of zinc oxide (ZnO) …
(ZnO@ G: EC) nanocomposite is prepared by in situ formation of zinc oxide (ZnO) …