Organic metal borate of ferroelectric material and preparation method and application thereof
A technology of organometallic and ferroelectric materials, applied in the direction of nickel organic compounds, etc., can solve the problems of low ferroelectric coupling coefficient, application limitation, small relative permittivity, etc., achieve good repeatability, high yield, and simple preparation process Effect
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[0011] 1. Preparation of compounds
[0012] Weigh nickel chloride (NiCl 2 ) 0.36g, boric acid (H 3 BO 3 ) 2.74g, measure diethylenetriamine (C 4 h 13 N 3 ) 2.0ml, pyridine (C 5 h 5 N) 8.0ml, water (H 2 (0) 1.0ml as raw material, its molar ratio is 1: 27: 25: 137: 17, stirred for 5min, put into a closed 28mL reaction kettle, warmed up to 200°C, kept at constant temperature for 2 days, took it out and let it cool naturally at room temperature After cooling, crystals can be obtained. Through X-ray single crystal diffraction analysis, it is determined that the crystal is [Ni(C 4 h 10 N 2 )(C 2 h 8 N 2 ) 2 ][B 5 o 6 (OH) 4 ] 2 .
[0013] 2. Performance test
[0014] We conducted research on the obtained organometallic borate and found that the relationship curve between the polarization intensity P and the applied electric field intensity E of the complex shows an obvious ferroelectric effect, Pr=0.075μC / cm 2 , Ps=0.01μC / cm 2 .
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