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My research focuses on a class of materials called ferroics. Ferroics are so-called “functional materials” used for applications such as computer memory, sensors and medical imaging etc. Our group spends hours trying make these ferroics at very tiny dimensions and to see what happens when ferroics are scaled down to the size of a few nanometers. The challenge is not only in making them but also seeing these nanostructures and measuring their properties. At such length scales, the background noise often overrides the signal of interest. A significant part of our research thus involves understanding these very precise corrections to the signal.
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ACS applied materials & interfacesno. 3 (2024): 4108-4116
JOURNAL OF MATERIALS CHEMISTRY Cno. 3 (2023): 802-826
ACS APPLIED ELECTRONIC MATERIALSno. 2 (2023): 1302-1310
Journal of Materials Chemistry C (2023)
arXiv (Cornell University) (2023)
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ADVANCED FUNCTIONAL MATERIALSno. 24 (2023)
Nature Materialsno. 5 (2023): 553-561
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Nature communicationsno. 1 (2023): 1693-1693
Vivasha Govinden,Peiran Tong,Xiangwei Guo,Qi Zhang,Sukriti Mantri, Mohammad Moein Seyfouri,Sergei Prokhorenko,Yousra Nahas,Yongjun Wu,Laurent Bellaiche, Tulai Sun,He Tian,
arxiv(2023)
D. Sando,S. Chen, O. Paull, B. Xu, J. J. L. van Rijn, C. Xu, S. Xu, F. Appert, J. Juraszek, L. Bellaiche,V. Nagarajan,T. Banerjee
arXiv (Cornell University) (2023)
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