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“Flexible composite mechanical energy harvester from a ferroelectric organoamino phosphonium salt”, Angewandte Chemie-International Edition, vol. 57, no. 29, pp. 9054-9058, 2018.
, “Imido-P(V) trianion supported enantiopure neutral tetrahedral Pd(II) cages”, Chemical Communications, vol. 54, no. 15, pp. 1873-1876, 2018.
, “All-organic composites of ferro- and piezoelectric phosphonium salts for mechanical energy harvesting application”, Chemistry of Materials, vol. 31, no. 15, pp. 5964-5972, 2019.
, “Chiral separation of styrene oxides supported by enantiomeric tetrahedral neutral Pd(II) cages”, Inorganic Chemistry, vol. 58, no. 22, pp. 15017-15020, 2019.
, “Nanocellulose reinforced flexible composite nanogenerators with enhanced vibrational energy harvesting and sensing properties”, vol. 2, no. 7, pp. 2550-2562, 2020.
, “Piezoelectric energy harvesting from a ferroelectric hybrid salt [Ph3MeP](4)[Ni(NCS)(6)] embedded in a polymer matrix”, Angewandte Chemie-International Edition, vol. 59, no. 26, pp. 10368-10373, 2020.
, “ Flexible energy harvester from an organic ferroelectric ammonium salt”, Chemistry-An Asian Journal, vol. 16, no. 24, pp. 4122-4129, 2021.
, “3D-printed polymer composite devices based on a ferroelectric chiral ammonium salt for high-performance piezoelectric energy harvesting”, Materials Horizons, vol. 10, no. 8, pp. 3153-3161, 2023.
, “ Ferroelectric aminophosphonium cyanoferrate with a large electrostrictive coefficient as a piezoelectric nanogenerator”, Angewandte Chemie-International Edition, vol. 62, no. 3, 2023.
, “Squarate-tethered enantiomeric Imido-Pd(II) cages for recognition and separation of chiral organic molecules”, Inorganic Chemistry , vol. 62, no. 47, pp. 19375-19381, 2023.
, “Highly electrostrictive salt cocrystal and the piezoelectric nanogenerator application of its 3D-printed polymer composite”, ACS Applied Materials and Interfaces , vol. 16, no. 20, pp. 26406-26416, 2024.
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