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Structural study and proton transport of bulk nanograined Y-doped BaZrO3 oxide protonics materials

机译:纳米掺Y掺杂BaZrO3氧化物质子材料的结构研究和质子迁移。

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Nanograin size of about 3-5nm of 20mol% Y-doped BaZrO3 (BZY20) proton conducting solid electrolyte has been prepared at low processing temperature (< 200 degrees C) and a bulk nanograined sample has been obtained at room temperature using cubic anvil pressing at 4GPa. The grain morphology and structural changes of the as-pressed and annealed BZY20 samples have been studied using powder X-ray diffraction (XRD), high resolution transmission electron microscope (HRTEM) equipped with energy dispersive X-ray (EDX), and electron diffraction analyses. Due to the presence of inhomogeneity such as trace formations of hydroxide phases of the as-pressed sample as observed from thermogravimetric and differential thermal analysis (TG/DTA), Fourier transform infrared (FTIR) results, and from the thermodynamics phase equilibria viewpoint, the conductivity is immeasurable. On the other hand, the sample annealed at 800 degrees C with similar to 10nm grain size shows a rather low protonic conductivity possibly due to poor interfacial grain boundary contacts and structurally disordered interface. However, as the grain grows to a well-crystallized structure with better interfacial and refined gain boundary and better yttrium distribution from grain interior to the grain boundaries, the total protonic conductivity increases and shows a good agreement with the results obtained using proton and deuteron isotope exchange reaction. The total protonic conductivities, bulk and grain boundary contributions, at 500 degrees C for samples annealed at 800 degrees C, 1250 degrees C, and 1500 degrees C are 8.7 x 10(-6) Scm(-1), 2 x 10(-3)Scm(-1), and 4 x 10(-3) Scm(-1) with grain sizes of about 10nm, 50nm, and 200nm, respectively.
机译:已在较低的加工温度(<200摄氏度)下制备了约3-5nm的20%(摩尔)的Y掺杂的BaZrO3(BZY20)质子传导固体电解质纳米颗粒,并在室温下使用立方砧压制获得了大块纳米颗粒样品。 4GPa。使用粉末X射线衍射(XRD),配备能量色散X射线(EDX)的高分辨率透射电子显微镜(HRTEM)和电子衍射研究了经压制和退火的BZY20样品的晶粒形貌和结构变化分析。由于存在不均匀性,例如从热重分析和差热分析(​​TG / DTA)观察到所压制样品的氢氧化物相痕迹,结果产生了傅立叶变换红外光谱(FTIR),从热力学相平衡的观点出发,电导率是无法测量的。另一方面,在800摄氏度下退火且晶粒尺寸类似于10nm的样品显示出相当低的质子传导性,这可能是由于不良的界面晶界接触和结构无序的界面所致。然而,随着晶粒长大到具有良好的界面和精细的增益边界以及从晶粒内部到晶粒边界的更好的钇分布的良好结晶的结构,总质子传导率增加,并且与使用质子和氘核同位素获得的结果显示出良好的一致性。交换反应。在800摄氏度,1250摄氏度和1500摄氏度下退火的样品在500摄氏度下的总质子传导率,体积和晶界贡献为8.7 x 10(-6)Scm(-​​1),2 x 10(- 3)Scm(-​​1)和4 x 10(-3)Scm(-​​1),晶粒尺寸分别约为10nm,50nm和200nm。

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