Graphene-polymer reinforcement of perovskite lattices for durable solar cells
East China University of Science and Technology · Shanghai University
Abstract
The lattice deformation and structural evolution of perovskite films in response to electric fields, temperature, and light limit the operational endurance of solar cells. We mechanically reinforced perovskite thin films by integrating a polymer-coupled monolithic single-layer graphene interface that led to a twofold enhancement in modulus and hardness. The synergistic effect of graphene and poly(methyl methacrylate) restricted photoinduced lattice expansion and decreased the deformation ratio from 0.31 to 0.08%, which minimized the structural damage caused by dynamic lattice evolution. Solar cell devices maintained >97% of their initial power conversion efficiency after maximum power point tracking for >3670…
Citation impact
- FWCI
- 90.18
- Percentile
- 100%
- References
- 86
Authors
14- QLQing Li
East China University of Science and Technology
- YZYichu Zheng
Shanghai University
- HWHaonan Wang
East China University of Science and Technology
- XLXinyi Liu
East China University of Science and Technology
- MLMiaoyu Lin
East China University of Science and Technology
Topics & keywords
- Graphene
- Reinforcement
- Perovskite (structure)
- Materials science
- Polymer
- Composite material
- Nanotechnology
- Chemical engineering