Silver niobate based anti-ferroelectric material with wide-temperature-range dielectric stability and high energy storage density and preparation method thereof
A high energy storage density, silver niobate-based technology, applied in the field of high energy storage density silver niobate-based antiferroelectric ceramic materials, can solve problems such as restricting application and low energy storage characteristics, and achieve easy operation and good stability. , the effect of simple ingredients and process steps
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[0030] A method for preparing a silver niobate-based antiferroelectric material with wide temperature range dielectric stability and high energy storage density, comprising the following steps:
[0031] Step 1: Weigh Ag according to the chemical dosage ratio of the target compound (x=0.005, 0.01, 0.015, 0.02, 0.03, 0.04, 0.07, 0.10, 0.13) of the above general formula 2 O, Nb 2 o 5 and Bi 2 o 3 For the original powder, mix the weighed raw materials and put them into a ball mill jar, add the ball milling solvent isopropanol and zirconia balls, mill for 12 hours, the ball milling speed is 350 rpm, and then put the mixture in an oven for drying at 80°C Dry, grind in a mortar, and pass through a 80-mesh sieve; in a tubular atmosphere furnace, feed flowing pure oxygen and pre-fire at 800-900°C, keep it warm for 4 hours, cool naturally to room temperature, and take it out of the furnace; again Ball mill for 4 hours, take out the powder and put it in an oven for drying at 80°C;
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Embodiment 1
[0046] A silver niobate-based antiferroelectric material with wide temperature range dielectric stability and high energy storage density, its chemical composition is expressed by the following formula: (Ag 0.985 Bi 0.005 )NbO 3 .
[0047] A method for preparing a silver niobate-based antiferroelectric material with wide temperature range dielectric stability and high energy storage density, comprising the following steps:
[0048] Step 1: Weigh Ag according to the chemical dosage ratio of the target compound of the above formula 2 O, Nb 2 o 5 and Bi 2 o 3 For the original powder, mix the weighed raw materials and put them into a ball mill jar, add the ball milling solvent isopropanol and zirconia balls, mill for 12 hours, the ball milling speed is 350 rpm, and then put the mixture in an oven for drying at 80°C dry, grind in a mortar, and pass through a 80-mesh sieve; in a tubular atmosphere furnace, feed flowing pure oxygen and pre-fire at 800°C, keep it warm for 4 hou...
Embodiment 2
[0054] A silver niobate-based antiferroelectric material with wide temperature range dielectric stability and high energy storage density, its chemical composition is expressed by the following formula: (Ag 0.97 Bi 0.01 )NbO 3 .
[0055] A method for preparing a silver niobate-based antiferroelectric material with wide temperature range dielectric stability and high energy storage density, comprising the following steps:
[0056] Step 1: Weigh Ag according to the chemical dosage ratio of the target compound of the above formula 2 O, Nb 2 o 5 and Bi 2 o 3 For the original powder, mix the weighed raw materials and put them into a ball mill jar, add the ball milling solvent isopropanol and zirconia balls, mill for 12 hours, the ball milling speed is 350 rpm, and then put the mixture in an oven for drying at 80°C dry, grind in a mortar, and pass through a 80-mesh sieve; in a tubular atmosphere furnace, feed flowing pure oxygen and pre-fire at 800°C, keep it warm for 4 hours...
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