首页> 外文期刊>Solid state ionics >Chlorine ion mobility in Cl-mayenite (Ca_(12)Al_(14)O_(32)Cl_2): An investigation combining high-temperature neutron powder diffraction, impedance spectroscopy and quantum-chemical calculations
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Chlorine ion mobility in Cl-mayenite (Ca_(12)Al_(14)O_(32)Cl_2): An investigation combining high-temperature neutron powder diffraction, impedance spectroscopy and quantum-chemical calculations

机译:Cl-钙铝石(Ca_(12)Al_(14)O_(32)Cl_2)中氯离子迁移率:结合高温中子粉末衍射,阻抗谱和量子化学计算的研究

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摘要

The crystal structure of Cl-mayenite (Ca_(12)Al_(14)O_(32)Cl_2) is very similar to that of the well-known oxygen ion conductor O-mayenite (Ca_(12)Al_(14)O_(33)), showing zeolite-type cages with partial occupancy by oxygen anions. In Clmayenite chlorine ions occupy the cage centers instead of oxygen ions, and it is of interestwhether these chlorine ions aremobile andwhether Cl-mayenite is a chlorine ion conductor. The answer for these questions is the focus of the paper. High temperature neutron powder experiments and impedance spectroscopy measurements were performed. For information on possible chloride migration pathways and activation energies, quantum-chemical calculations based on density-functional theorywere carried out. The behavior of Cl~- is in clear contrast to O~(2-) in O-mayenite: even at high temperatures it only shows normal harmonic thermal displacement without indications for long range diffusion between the cages. The total ionic conductivity was found to be very low with a value of σ ≈ 10~(-6) S cm~(-1) at 1073 K. Quantum-chemical calculations result in a very high activation barrier for Cl~- migration of 3.07 eV.
机译:Cl-钙铝石(Ca_(12)Al_(14)O_(32)Cl_2)的晶体结构与众所周知的氧离子导体O-钙铝石(Ca_(12)Al_(14)O_(33 )),显示出沸石型笼子,其中部分被氧阴离子占据。在Clmayenite中,氯离子代替了氧离子占据了笼子中心,因此,这些氯离子是否可移动以及Cl-钙铝石是否为氯离子导体引起人们的关注。这些问题的答案是本文的重点。进行了高温中子粉末实验和阻抗谱测量。为了了解可能的氯离子迁移途径和活化能的信息,进行了基于密度泛函理论的量子化学计算。 Cl〜-的行为与O-钙铝石中的O〜(2-)形成鲜明的对比:即使在高温下,Cl〜-也仅显示出正常的谐波热位移,没有迹象表明保持架之间会发生长距离扩散。发现总离子传导率非常低,在1073 K时的值为σ≈10〜(-6)S cm〜(-1)。量子化学计算得出Cl〜-迁移的激活势垒非常高。 3.07 eV。

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