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Giant electrostriction-like response from defective non-ferroelectric epitaxial BaTiO 3 integrated on Si (100)
by
Molleti, Sri Harsha
, Avasthi, Sushobhan
, Ranjan, Rajeev
, Patil, Girish
, Mallya, Ambresh
, Kooi, Bart
, Pal, Subhajit
, Kumar, Vishnu
, Ahmadi, Majid
, Rai, Rajeev Kumar
, Jain, Mudit
, Raghavan, Srinivasan
, Chandorkar, Saurabh
, Khandelwal, Upanya
, Nukala, Pavan
, Vura, Sandeep
, Sandilya Ventrapragada, Rama Satya
, Parate, Shubham Kumar
2024
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Giant electrostriction-like response from defective non-ferroelectric epitaxial BaTiO 3 integrated on Si (100)
by
Molleti, Sri Harsha
, Avasthi, Sushobhan
, Ranjan, Rajeev
, Patil, Girish
, Mallya, Ambresh
, Kooi, Bart
, Pal, Subhajit
, Kumar, Vishnu
, Ahmadi, Majid
, Rai, Rajeev Kumar
, Jain, Mudit
, Raghavan, Srinivasan
, Chandorkar, Saurabh
, Khandelwal, Upanya
, Nukala, Pavan
, Vura, Sandeep
, Sandilya Ventrapragada, Rama Satya
, Parate, Shubham Kumar
in
2024
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Giant electrostriction-like response from defective non-ferroelectric epitaxial BaTiO 3 integrated on Si (100)
by
Molleti, Sri Harsha
, Avasthi, Sushobhan
, Ranjan, Rajeev
, Patil, Girish
, Mallya, Ambresh
, Kooi, Bart
, Pal, Subhajit
, Kumar, Vishnu
, Ahmadi, Majid
, Rai, Rajeev Kumar
, Jain, Mudit
, Raghavan, Srinivasan
, Chandorkar, Saurabh
, Khandelwal, Upanya
, Nukala, Pavan
, Vura, Sandeep
, Sandilya Ventrapragada, Rama Satya
, Parate, Shubham Kumar
2024
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Giant electrostriction-like response from defective non-ferroelectric epitaxial BaTiO 3 integrated on Si (100)
Journal Article
Giant electrostriction-like response from defective non-ferroelectric epitaxial BaTiO 3 integrated on Si (100)
2024
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Overview
Lead-free, silicon compatible materials showing large electromechanical responses comparable to, or better than conventional relaxor ferroelectrics, are desirable for various nanoelectromechanical devices and applications. Defect-engineered electrostriction has recently been gaining popularity to obtain enhanced electromechanical responses at sub 100 Hz frequencies. Here, we report record values of electrostrictive strain coefficients (M
) at frequencies as large as 5 kHz (1.04×10
m
/V
at 1 kHz, and 3.87×10
m
/V
at 5 kHz) using A-site and oxygen-deficient barium titanate thin-films, epitaxially integrated onto Si. The effect is robust and retained upon cycling upto 6 million times. Our perovskite films are non-ferroelectric, exhibit a different symmetry compared to stoichiometric BaTiO
and are characterized by twin boundaries and nano polar-like regions. We show that the dielectric relaxation arising from the defect-induced features correlates well with the observed giant electrostriction-like response. These films show large coefficient of thermal expansion (2.36 × 10
/K), which along with the giant M
implies a considerable increase in the lattice anharmonicity induced by the defects. Our work provides a crucial step forward towards formulating guidelines to engineer large electromechanical responses even at higher frequencies in lead-free thin films.
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