Pawan Kumar, Mamta Gill, Nilotpal Deka, Supriya Sahoo, Ramamoorthy Boomishankar, Vadapalli Chandrasekhar
Molecular ferroelectric materials have garnered profound interest in the last two decades owing to their structural flexibility, tunability, and homochirality, enabling a variety of technological applications. Achieving polar point groups through rational molecular design is crucial for discovering new molecular ferroelectrics. Herein, we report a mononuclear Cu(II) complex, [Cu((S,S)-L)(NO3)(CH3OH)]·NO3 (1), where (S,S)-L = 2,6-bis((S)-4-isopropyl-5,5-diphenyl-4,5-dihydrooxazol-2-yl)pyridine, synthesised using a chiral (S,S)-L ligand bearing two chiral carbon centers. 1 crystallises in the polar monoclinic P21 space group and shows ferroelectric behaviour, characterized by a P-E hysteresis loop with a remanent polarization of 0.92 μC cm-2. Piezoelectric energy harvesting using its thermoplastic polyurethane (TPU) composites gives a maximum output voltage of 13.4 V, which was further used to charge a 10 μF capacitor within 90 seconds.