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Preparation of mi-ordered Barium Titanate Fine Particles using the 2-step Thermal Decomposition of Barium Titanyl Oxalate and Their Dielectric Properties

机译:使用2步热分解草酸钡的2步热分解和它们的介电性能制备MI订购的钛酸钡细颗粒

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The new 2-step thermal decomposition method using barium titanyl oxalate (BaTiO(C{sub}2O{sub}4){sub}2·4H{sub}2O) was proposed to obtain inpurity-free and defect-free nm-sized barium titanate (BaTiO{sub}3) particles. At the 1st step, BaTiO(C{sub}2O{sub}4){sub}2· 4H{sub}2O was annealed at 400 °C for 1 h in the O{sub}2 flow. This product obtained at 400°C was amorphous, but its chemical composition was BaCO{sub}3-TiO{sub}2. At the 2nd step, the amorphous compound was annealed under vacuum. Finally, the BaTiO{sub}3 single crystals with a size of 16.5 nm were prepared around 620 °C. Their characterization was done using various methods. As the impurities, the surface adsorbed hydroxyl group (OH{sup}-) and the surface adsorbed carbonate ((CO{sub}3){sup}-) were detected, but no lattice hydroxyl group was detected using IR. These results suggested that the BaTiO{sub}3 crystallites have less impurity in their lattice. The relative density of the BaTiO{sub}3 crystallites was over 98 %. Moreover, a new powder dielectric measurement was proposed. This method was composed of two parts; (1) the dielectric measurement using the slurry of the BaTiO{sub}3 crystallites with 1-propanol and (2) the simulation using the electrostatic field analysis of the finite element method. When these two kinds of the values becomes to same, the dielectric constant of the BaTiO{sub}3 crystallites can be determined. Using this powder dielectric measurement, the dielectric constant of the BaTiO{sub}3 crystallites with a size of 16.5 nm were determined at almost 400.
机译:采用草酸钡(BATIO(C {Sub} 2O} 4){Sub} 2·4H {Sub} 2o)的新的2步热分解方法,以获得无处不自由和无缺陷的NM大小钛酸钡(Batio {sub} 3)颗粒。在第1步骤中,BATIO(C {SUB} 2O {SUB} 4){SUB} 2·4H {SUB} 2o在O {SUB} 2流中以400°C退火1小时。在400℃下获得的该产物是无定形的,但其化学成分是Baco {sub} 3-TiO {sub} 2。在第二步骤中,无定形化合物在真空下退火。最后,在620℃下制备尺寸为16.5nm的BatiO {sub} 3个单晶。他们的表征是使用各种方法完成的。作为杂质,检测表面吸附的羟基(OH {sup} - )和表面吸附的碳酸酯((Co {sub} 3){sup} - ),但使用红外检测晶格羟基。这些结果表明,BATIO {亚} 3微晶在其晶格中具有较小的杂质。 BATIO {亚} 3微晶的相对密度超过98%。此外,提出了一种新的粉末电介质测量。该方法由两部分组成; (1)使用具有1-丙醇的BATIO {SUB} 3微晶的浆料和(2)使用有限元方法的静电场分析来模拟。当这两种值变为相同时,可以确定BATIO {sub} 3微晶的介电常数。使用该粉末电介质测量,在近400℃下测定具有尺寸为16.5nm的BATIO {Sub} 3微晶的介电常数。

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