The nanomorphologies of the bulk heterojunction (BHJ) layer of polymer solar cells are extremely sensitive to the electrode materials and thermal annealing conditions. In this work, the correlations of electrode materials, thermal annealing sequences, and resultant BHJ nanomorphological details of P3HT:PCBM BHJ polymer solar cell are studied by a series of large-scale, coarse-grained (CG) molecular simulations of system comprised of PEDOT:PSS/P3HT:PCBM/Al layers. Simulations are performed for various configurations of electrode materials as well as processing temperature. The complex CG molecular data are characterized using a novel extension of our graph-based framework to quantify morphology and establish a link between morphology and pro...
Transmission electron microscopy and electron diffraction are used to study the changes in morpholog...
The performance of polymer-fullerene bulk heterojunction (BHJ) solar cells is strongly dependent on ...
In this study, the three dimensional nanoscale organization in the photoactive layers of poly(3-hexy...
The nanomorphologies of the bulk heterojunction (BHJ) layer of polymer solar cells are extremely sen...
[[sponsorship]]應用科學研究中心[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/G...
It is well-established that thermal annealing optimizes the morphology and improves the efficiency o...
Understanding the nanomorphology of polymer-based solar cells is key to improving device efficiencie...
Nanoscale morphology has been established as one of the controlling factors in the device performanc...
Structure and morphology play a critical role in determining the performance of organic photovoltaic...
Crystallization and phase segregation during thermal annealing lead to the increase of power-convers...
Substrate and top electrode effects on P3HT lamellar crystallization, were studied using the full de...
In this study, the three-dimensional (3D) nanoscale organization in the photoactive layers of poly(3...
Active layer nanomorphology is a major factor that determines the efficiency of bulk heterojunction ...
AbstractSubstrate and top electrode effects on P3HT lamellar crystallization, were studied using the...
Transmission electron microscopy and electron diffraction are used to study the changes in morpholog...
The performance of polymer-fullerene bulk heterojunction (BHJ) solar cells is strongly dependent on ...
In this study, the three dimensional nanoscale organization in the photoactive layers of poly(3-hexy...
The nanomorphologies of the bulk heterojunction (BHJ) layer of polymer solar cells are extremely sen...
[[sponsorship]]應用科學研究中心[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/G...
It is well-established that thermal annealing optimizes the morphology and improves the efficiency o...
Understanding the nanomorphology of polymer-based solar cells is key to improving device efficiencie...
Nanoscale morphology has been established as one of the controlling factors in the device performanc...
Structure and morphology play a critical role in determining the performance of organic photovoltaic...
Crystallization and phase segregation during thermal annealing lead to the increase of power-convers...
Substrate and top electrode effects on P3HT lamellar crystallization, were studied using the full de...
In this study, the three-dimensional (3D) nanoscale organization in the photoactive layers of poly(3...
Active layer nanomorphology is a major factor that determines the efficiency of bulk heterojunction ...
AbstractSubstrate and top electrode effects on P3HT lamellar crystallization, were studied using the...
Transmission electron microscopy and electron diffraction are used to study the changes in morpholog...
The performance of polymer-fullerene bulk heterojunction (BHJ) solar cells is strongly dependent on ...
In this study, the three dimensional nanoscale organization in the photoactive layers of poly(3-hexy...