Bandgap engineering of nanostructured perovskite oxides (BasnO3): synthesis, modification, and applications in optoelectronic and energy harvesting devices
Implementing Organization
National Institute of Technology (NIT) srinagar, Jammu & Kashmir
Principal Investigator
Dr. Ishtihadah Islam
National Institute of Technology (NIT) srinagar, Jammu & Kashmir
About
shifting from bulk to nano dimensions has been a focus to understand the unique properties of materials at 2D, 1D, or 0D levels, which can reduce costs and help miniaturize the size of scalable and flexible devices. Two-dimensional (2D) materials like graphene, transition-metal di-chalcogenides, perovskite monolayers, and phosphorene have potential applications in various fields. However, 2D materials with good stability, moderate band gap, ultra-low thermal conductivity, high carrier mobility, and reasonable power factor are rare. Graphene, for example, has ultrahigh carrier mobility, but its band gap absence prevents its application in suitable devices. Mos2 exhibits a moderate band gap, but this results in low carrier mobility. Black phosphorene has a moderate bandgap and high carrier mobility, enabling its application in field-effect transistors or photodetectors but easily degrades in air. Researchers are now exploring the design of new, practically synthesizable, and long-lasting nanostructured materials. Recent work on Mn doped BasnO3 nanostructures shows that transition metal doped nano particles of BasnO3 exhibit several entrusting properties, such as transparent diluted magnets semiconductor DMs, colossal magneto-dielectrics, visible light activity, and band gap & electronic conductivity tuning. Understanding these properties will be crucial for spintronic or optoelectronic applications and energy harvesting.
Source
Source
Anusandhan National Research Foundation/science and Engineering Research Board (sERB), DsT 2023-24
Science and Engineering Research Board (SERB), New Delhi
Anusandhan National Research Foundation (ANRF)
Quick Information
Area of Research
Physical Sciences
Start Year
2023
End Year
2025
Status
Completed
Contact
ishtihadahislam@gmail.com
Output
No. of Research Paper
00
Technologies (If Any)
00
No. of PhD Produced
00
No. of Patents
Filed :00
Grant :00
Disclaimer:
Information available on this portal is sourced from various organizations and is provided for informational purposes only. Users are advised to verify details from the respective official sources.
Please enter your details
Please provide your name and email to continue. Your details are saved in this browser for future use.
Latest Updates
Loading…
⚠️
You are leaving this website
You are about to be redirected to an external website that is not operated by
India Science, Technology & Innovation (ISTI) Portal.