The interfacial dipolar polarization in inverted structure polymer solar cells, which arises spontaneously from the absorption of ethanolamine end groups such as amine and hydroxyl groups on ripple-structure zinc oxide (ZnO-R), lowers the contact barrier for the electron transport and extraction and leads to enhanced electron mobility, suppression of bimolecular recombination, reduction of the contact resistance and series resistance, and remarkable enhancement of the power conversion efficiency.close5
Interfacial engineering is crucial to improve photovoltaic performance. In this work, a single-junct...
Inverted polymer solar cell is developed using small molecular tris(8-hydroxyquinolinato) aluminum (...
AbstractBulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution proc...
The interfacial dipolar polarization in inverted structure polymer solar cells, which arises spontan...
Cathode interlayer is essential to inverted bulk heterojunction polymer solar cells (PSCs). A series...
We demonstrate highly efficient inverted polymer-based light-emitting diodes (iPLEDs) and inverted p...
Three amino-functionalized fluorene oligomers with different solubility were developed as cathode in...
Dipole induced vacuum level shift has been demonstrated to be responsible for the enhanced efficienc...
We demonstrate highly efficient inverted polymer-based light-emitting diodes (iPLEDs) and inverted p...
Achieving 10.5% Efficiency for Inverted Polymer Solar Cells by modifying ZnO Cathode Interlayer wit...
Bulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution processing t...
One of the key components in inverted organic solar cells is a zinc oxide (ZnO) layer as an electron...
Bulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution processing t...
Highly efficient inverted organic-inorganic light-emitting diodes require well-matched energy levels...
One of the key components in inverted organic solar cells is a zinc oxide (ZnO) layer as an electron...
Interfacial engineering is crucial to improve photovoltaic performance. In this work, a single-junct...
Inverted polymer solar cell is developed using small molecular tris(8-hydroxyquinolinato) aluminum (...
AbstractBulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution proc...
The interfacial dipolar polarization in inverted structure polymer solar cells, which arises spontan...
Cathode interlayer is essential to inverted bulk heterojunction polymer solar cells (PSCs). A series...
We demonstrate highly efficient inverted polymer-based light-emitting diodes (iPLEDs) and inverted p...
Three amino-functionalized fluorene oligomers with different solubility were developed as cathode in...
Dipole induced vacuum level shift has been demonstrated to be responsible for the enhanced efficienc...
We demonstrate highly efficient inverted polymer-based light-emitting diodes (iPLEDs) and inverted p...
Achieving 10.5% Efficiency for Inverted Polymer Solar Cells by modifying ZnO Cathode Interlayer wit...
Bulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution processing t...
One of the key components in inverted organic solar cells is a zinc oxide (ZnO) layer as an electron...
Bulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution processing t...
Highly efficient inverted organic-inorganic light-emitting diodes require well-matched energy levels...
One of the key components in inverted organic solar cells is a zinc oxide (ZnO) layer as an electron...
Interfacial engineering is crucial to improve photovoltaic performance. In this work, a single-junct...
Inverted polymer solar cell is developed using small molecular tris(8-hydroxyquinolinato) aluminum (...
AbstractBulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution proc...