ProfessorAnita Ho-Baillie
John Hooke Chair of Nanoscience
Faculty of Science
Orcid identifier0000-0001-9849-4755 (opens in a new tab)
- John Hooke Chair of NanoscienceFaculty of Science
Research projects & supervision summary
Project summary can be found on our group website: https://anitagroup-perovskite.sydney.edu.au/opportunites/
Complimentary scholarships for these project smay be available through a competitive process. To find out more, refer to the Faculty of Science Postgraduate Research Excellence Award and contact Professor Anita Ho-Baillie directly.
RESEARCH PROJECTS & ACTIVITIES
- RESEARCH-BASED DEGREE SUPERVISION2D and quasi-2D metal halide perovskites for optoelectronic device applications
- RESEARCH-BASED DEGREE SUPERVISIONAdvancing Commercially Viable and Durable Large-Area Perovskite Solar Modules and Perovskite-Silicon Tandems with Interconnected Sub-Cells
- RESEARCH-BASED DEGREE SUPERVISIONCO2 laser annealing for metal halide perovskite solar cells
- RESEARCH-BASED DEGREE SUPERVISIONEfficient perovskite single junction and perovskite-silicon double junction solar cells
- RESEARCH-BASED DEGREE SUPERVISIONEngineering efficient and sustainable catalysts for hydrogen production through (photo)electrochemical water splitting
- RESEARCH-BASED DEGREE SUPERVISIONHigh efficiency perovskite solar cells for space applications
- RESEARCH-BASED DEGREE SUPERVISIONImprovement of stability and efficiency of tandem perovskite-Si solar cells and modules
- RESEARCH-BASED DEGREE SUPERVISIONImproving stability of wide bandgap perovskite solar cells for multi-junction applications
- RESEARCH-BASED DEGREE SUPERVISIONLaser-Induced Nanopatterning of Halide Perovskite Films for Enhanced Solar cells Performance: Improving Power Conversion Efficiency through Advanced Light Management
- RESEARCH-BASED DEGREE SUPERVISIONLow Dimensional Metal Halide Perovskites for Optoelectronics
- RESEARCH-BASED DEGREE SUPERVISIONNew Glass Substrates and Spectrum-shifting layers to improve solar power conversion efficiency of perovskite solar cells.
- RESEARCH-BASED DEGREE SUPERVISIONNew Glass Substrates and Spectrum-shifting layers to improve solar power conversion efficiency of perovskite solar cells.
- RESEARCH-BASED DEGREE SUPERVISIONPave the way for applying self-assembled monolayers to large-area inverted perovskite solar cells
- RESEARCH-BASED DEGREE SUPERVISIONPerovskite color image sensor
- RESEARCH-BASED DEGREE SUPERVISIONPerovskite solar cells for building integrated photovoltaics
- RESEARCH-BASED DEGREE SUPERVISIONPlastic and organic waste photoreforming for green hydrogen evolution and valuable products
- RESEARCH-BASED DEGREE SUPERVISIONStudy of Chirality in Hybrid Metal Halide Perovskites
- RESEARCH-BASED DEGREE SUPERVISIONUndervoltage Alkaline Water Electrolysis to Optimize Electrolyzer Efficiency for Sustainable Generation of Hydrogen