Multiferroic nanostructured oxides for solar fuel generation

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Title
Multiferroic nanostructured oxides for solar fuel generation

CoPED ID
96be810c-2517-4d49-92dd-c4078f786549

Status
Active

Funders

Value
No funds listed.

Start Date
Sept. 30, 2019

End Date
June 29, 2023

Description

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The economic conversion of solar energy into chemical fuels is one of the most promising paths to meet the future energy demand in a sustainable manner. Solar-driven energy generation relies on the efficient absorption and conversion of the energy of the sunlight by a semiconductor material. Control and development of unique and tailored nanostructured architectures whilst preventing the degradation of photocatalytic activity using polar semiconductors could lead to major technological benefits and ultimately efficient and cost-effective conversion of solar energy. Polar multiferroic ceramics can promote efficient separation and transport of photoexcited charge carriers. Of particular interest is unique composite nanostructures of these polar ceramics that could prohibit bulk and surface recombination pathways hence leading to significant improvements in overall solar to fuel conversion efficiency. This project will investigate synthesis and processing of controlled nanostructures of multiferroic ceramic materials using low temperature microwave hydrothermal methods and examine the effect of processing parameters on photocatalytic performance in a particulate-based artificial photosynthesis system. The detailed investigation carried out in this work will contribute to the development of fundamental understanding of the role of polarisation and nanostructure architecture in the performance of powder based systems. This will significantly impact and accelerate the utilisation of such systems in practical applications of sustainable fuel generation.

Sina Saremi Yarahmadi SUPER_PER
Thomas Clarkson STUDENT_PER

Subjects by relevance
  1. Solar energy
  2. Nanostructures
  3. Semiconductors
  4. Energy efficiency
  5. Fuels
  6. Development (active)
  7. Energy control
  8. Architecture
  9. Renewable energy sources

Extracted key phrases
  1. Solar fuel generation
  2. Solar energy
  3. Sustainable fuel generation
  4. Energy generation
  5. Unique composite nanostructure
  6. Economic conversion
  7. Future energy demand
  8. Nanostructure architecture
  9. Overall solar
  10. Chemical fuel
  11. Polar multiferroic ceramic
  12. Conversion efficiency
  13. Effective conversion
  14. Multiferroic
  15. Multiferroic ceramic material

Related Pages

UKRI project entry

UK Project Locations