Related Experiment Video
Updated: Sep 17, 2025

Well-aligned Vertically Oriented ZnO Nanorod Arrays and their Application in Inverted Small Molecule Solar Cells
Published on: April 25, 2018
The Modification of ZnO with 2D g-C3N5 as Electron Transport Layer for High-Performance and Stable Organic Solar
Song Yang1, Shengwei Shi2, Huangzhong Yu1,2
1School of Physics and Optoelectronics, South China University of Technology, Guangzhou, 510640, China.
None:
ZnO has been traditionally applied in organic solar cells (OSCs) as an electron transport layer (ETL). However, inevitable vacancy defects on the surface of ZnO result in trap-assisted recombination centers and thus low-efficiency electron transport in OSCs. Herein, an effective and facile method has been developed to modify the ZnO surface with 2D g-C3N5 for high-performance and stable OSCs. The results show that 2D g-C3N5 can effectively passivate various defects on the surface of ZnO, such as oxygen vacancies and OH, leading to the reduction of the work function of the ZnO layer. The combination of theoretical calculations and experimental characterizations reveals a charge transfer mechanism between g-C3N5 and the ZnO surface and a physical mechanism of oxygen vacancy filling in ZnO. Furthermore, with 1 wt% g-C3N5-modified ZnO as the ETL, inverted OSCs based on PM6: 2,2'- [[12,13-Bis(2-butyloctyl)-12,13-dihydro-3,9-dinonylbisthieno[2″,3″:4',5']thieno[2',3':4,5]pyrrolo[3,2-e:2',3'-g][2,1,3]benzothiadiazole-2,10-diyl]bis[methylidyne(5,6-chloro-3-oxo-1H-indene-2,1(3H)-diylidene)]]bis[propanedinitrile] (BTP-eC9) and PM6:L8-BO:BTP-eC9 exhibit the highest the power conversion efficiency (PCE) of 18.01% and 18.84%, respectively, which is much higher than that for the corresponding reference devices without the modified ETL (16.32% and 17.67%). Therefore, this study provides an effective and facile way for the defect modification of ZnO by 2D materials, and offers a deep understanding of the passivation mechanism of ZnO defects.
More Related Videos
08:14Improved Heterojunction Quality in Cu2O-based Solar Cells Through the Optimization of Atmospheric Pressure Spatial Atomic Layer Deposited Zn1-xMgxO
Published on: July 31, 2016
14:37Ambient Method for the Production of an Ionically Gated Carbon Nanotube Common Cathode in Tandem Organic Solar Cells
Published on: November 5, 2014
Related Concept Videos
The Z-Scheme of Electron Transport in Photosynthesis
P-N junction