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An eco-friendly flexible piezoelectric energy harvester that delivers high output performance is based on lead-free MASnI(3) films and MASnI(3)-PVDF composite films

机译:一种环保灵活的压电能量收割机,提供高输出性能的基于无铅Masni(3)薄膜和Masni(3)-PVDF复合膜

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摘要

An environmentally-friendly lead-free methylammonium tin iodide (MASnI(3)) perovskite is successfully synthesized using a facile approach of an antisolvent-assisted collision technique (ACT) under room ambient conditions, which results stability within 24 h under ambient room conditions. The phase transition of MASnI3 from tetragonal to cubic is first observed at similar to 30 degrees C. Polycrystalline MASnI(3) films reveal a high dielectric constant of similar to 65 at 100 kHz, a low-leakage current density of 7x10(-7) A cm(-2) at 50 kV cm(-1), well-developed P-E hysteresis loops, and a high piezoelectric coefficient (d(33)) of 20.8 pm V-1. The MASnI(3) piezoelectric nanogenerator (PENG) shows an output voltage of similar to 3.8 V and an output current density of 0.35 mu A cm(-2). To enhance the piezoelectric output performance, the MASnI(3) films are composited with an environmentally friendly PVDF polymer that had a porous structure. The PVDF-MASnI(3) composite based-PENG reveals a maximum output voltage of similar to 12.0 V and current density of similar to 4.0 mu A cm(-2). A green light-emitting diode (LED) using the PVDF-MASnI(3) PENGs is instantly lighted without need of a storage device, and long-term stability of the composite PENGs is validated for 90 days. This simple and cost-effective solution process is feasible for the fabrication of large-scale, high-performance, and environmental-friendly PENGs based on lead-free organic-inorganic perovskites to extensively implicate in medical and biomechanical applications.
机译:使用室内环境条件下的抗溶解碰撞技术(ACT)的容易方法成功地合成了环保型无铅甲基锡碘化物(MasNi(3))钙钛矿,在环境室条件下产生24小时内的稳定性。首先在类似于30摄氏度下观察到从四边形到立方的MasNi 3的相转变。多晶体MasNi(3)膜揭示了与100kHz的65相似的高介电常数,低漏电流密度为7×10(-7)在50kVcm(-1)处的CM(-2),发达的PE滞后环,以及20.8μmV-1的高压电系数(D(33))。 MASNI(3)压电纳米电磁炉(韧性)表示类似于3.8V的输出电压,输出电流密度为0.35μm(-2)。为了增强压电输出性能,Masni(3)膜具有具有多孔结构的环保PVDF聚合物。 PVDF-MASNI(3)基于基于彭的复合材料显示出类似于12.0V的最大输出电压,电流密度类似于4.0μm(-2)。使用PVDF-MASNI(3)彭的绿色发光二极管(LED)立即不需要储存装置来点燃,复合悬浮的长期稳定性验证为90天。这种简单且经济高效的解决方案过程可根据无铅的有机无机钙培制造大规模,高性能和环保的彭,以广泛地牵引医疗和生物力学应用。

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