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Electrical conductivity and phase transition of solid oxide fuel cell electrolyte La_2Mo_(2-x)Ti_xO_(9-δ) ceramics

机译:固体氧化物燃料电池电解质LA_2MO_(2-X)TI_XO_(9-δ)陶瓷的电导率和相转变

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A novel series of ceramic samples La_2Mo_(2-x)Ti_xO_(9-δ) (x = 0, 0.025, 0.05, 0.075) were prepared by solid-state reaction method. Their structures and phase transitions were studied by XRD, DSC and CTE. Their Electrical conductivities and oxygen ion transport numbers were measured by AC impedance spectroscopy at 773~1073 K and EMF at 673~1073 K, respectively. Results showed that even when x=0.075, the sample was almost pure oxygen ion conductor under the oxygen partial pressure gradient of 1.0 atm/0.21 atm, and though all the Ti-doped samples still underwent α/β structure transition, no abrupt change in the electrical conductivity was observed accompanying with the transition. They exhibited considerably higher electrical conductivity than La_2Mo_2O_9, especially at 773~873 K and the conductivity increased with increasing x value. The value of conductivity for La_2Mo_(1.925)Ti_(0.075)O_(9-δ) reached 8.5 ×10~(-3) S-cm~(-1) at 773 K and 0.08 S-cm~(-1) at 1,073 K.
机译:通过固态反应方法制备了一种新颖的陶瓷样品La_2MO_(2-X)Ti_xO_(X = 0,0.025,0.05,0.075)。通过XRD,DSC和CTE研究了它们的结构和相转变。通过在773〜1073k和673〜1073k的EMF下,通过AC阻抗光谱法测量它们的电导率和氧离子传输数。结果表明,即使x = 0.075,样品在1.0atm / 0.21atm的氧分压梯度下几乎纯的氧离子导体,虽然所有Ti掺杂样品仍然仍然接受α/β结构转变,但仍然没有突然变化随着过渡伴随着电导率。它们比LA_2MO_2O_9表现出相当高的电导率,特别是在773〜873k,并且电导率随着x值的增加而增加。 LA_2MO_(1.925)TI_(0.075)O_(9-Δ)的电导率值在773k和0.08 s-cm〜(-1)时达到8.5×10〜(-3)S-cm〜(-1) 1,073 K.

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