A Chiral B-N Adduct as a New Frontier in Ferroelectrics and Piezoelectric Energy Harvesting.
Supriya SahooSupratik MukherjeeVijay Bhan SharmaWilfredo Ibarra HernándezAndrés Camilo Garcia-CastroJan Kazimierz ZarebaDinesh KabraGanapathy VaitheeswaranRamamoorthy BoomishankarPublished in: Angewandte Chemie (International ed. in English) (2024)
Within the burgeoning field of electronic materials, B-N Lewis acid-base pairs, distinguished by their partial charge distribution across boron and nitrogen centers, represent an underexplored class with significant potential. These materials exhibit inherent dipoles and are excellent candidates for ferroelectricity. However, the challenge lies in achieving the optimal combination of hard-soft acid-base pairs to yield B-N adducts with stable dipoles. Herein, we present an enantiomeric pair of B-N adducts [ R/S C 6 H 5 CH(CH 3 )NH 2 BF 3 ] ( R/S MBA-BF 3 ) crystallizing in the polar monoclinic P2 1 space group. The ferroelectric measurements on R MBA-BF 3 gave a rectangular P-E hysteresis loop with a remnant polarization of 7.65 μC cm -2 , a value that aligns with the polarization derived from the extensive density-functional theory computations. The PFM studies on the drop-casted film of R MBA-BF 3 further corroborate the existence of ferroelectric domains, displaying characteristic amplitude-bias butterfly and phase-bias hysteresis loops. The piezoelectric nature of the R MBA-BF 3 was confirmed by its direct piezoelectric coefficient (d 33 ) value of 3.5 pC N -1 for its pellet. The piezoelectric energy harvesting applications on the sandwich devices fabricated from the as-made crystals of R MBA-BF 3 gave an open circuit voltage (V PP ) of 6.2 V. This work thus underscores the untapped potential of B-N adducts in the field of piezoelectric energy harvesting.