Achieving Ultrahigh Piezoelectricity In Organic-Inorganic Vacancy-Ordered Halide Double Perovskites For Mechanical Energy Harvesting

ACS ENERGY LETTERS(2021)

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摘要
Piezoelectric charge coefficient (d(33)) and piezoelectric voltage coefficient (g(33)) are the two most critical parameters that define output performance of piezoelectric nanogenerators (PNGs). Herein, we propose a vacancy-ordered double perovskite of TMCM2SnCl6 (where TMCM is trimethylchloromethylammonium) with a large d(33) of 137 pC/N and g(33) of 980 X 10(-3) V.m/N. The piezoelectric coefficients are considered from the halogen-bonding-mediated synergistic movements of atomic displacement in inorganic [SnCl6](2-) octahedrons, as well as the molecular rotation of organic TMCM+, which is revealed by a combined density functional theory (DFT) and experimental study. The TMCM2SnCl6 possesses a high saturated polarization (P-s) of 8.7 mu C/cm(2), a high Curie temperature (T-c) of 365 K, and a low coercive field (E-c) of 0.6 kV/cm. The output voltage (V-oc) and current (I-sc) of the PNGs are 81 V and 2 mu A at an applied mechanical excitation of (4.9 N, 40 Hz). We hope this work will provide guidance in energy harvesting by innovatively designing highly piezoelectric perovskites for the PNGs.
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关键词
ultrahigh piezoelectricity,halide double perovskites,vacancy-ordered
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