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First-principles study of the structure of stoichiometric and Mn-deficient MnO2

机译:化学原理和缺锰MnO2结构的第一性原理研究

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We present an extensive Density Functional Theory study on the phases and magnetic states of MnO2, with over 300 calculations of various Mn-vacancy configurations and magnetic spin states. It is shown that the paramagnetic extrapolations of spin-polarized results are essential to correctly reproduce pyrolusite as the ground state of MnO2. Paramagnetic energies are obtained by fitting a Heisenberg Hamiltonian to the energy of 10-20 magnetic configurations for each of 16 possible MnO2 polymorphs. Near groundstate degeneracy is shown to occur due to the frustration of otherwise large interactions. While many other structures are found to be near degenerate in energy with pyrolusite, no thermal disorder exists in the system up to several thousand degrees. The thermal disorder is suppressed because the strong correlation of the Mn-vacancy order along the lines of face-sharing octahedra removes any low-energy excitations from the system. Mn vacancies compensated by protons (Ruetschi defects), ubiquitously present in commercial MnO2, are shown to have a dramatic effect on phase stability. The stabilizing effects of Ruetschi defects may explain the presence in MnO2 of ramsdellite and twinning, both of which are unstable in the pure material. We believe Ruetschi defects to be an important source of the structural complexity of synthetic MnO2 produced either electrochemically or chemically. (C) 2003 Elsevier Science (USA). All rights reserved. [References: 29]
机译:我们对MnO2的相和磁态进行了广泛的密度泛函理论研究,对各种Mn空位构型和磁自旋态进行了300多次计算。结果表明,自旋极化结果的顺磁外推对于正确地将软锰矿正确地复制为MnO2的基态至关重要。对于16种可能的MnO2多晶型物中的每一种,通过将Heisenberg哈密顿量拟合为10-20种磁性构型的能量,可获得顺磁能。由于阻碍了其他相互作用的发生,近基态简并性发生了。虽然发现许多其他结构在能量上几乎都被软锰矿简并,但在高达数千度的系统中都没有热失调。热失调得到抑制,因为沿着面共享八面体的直线,Mn-空位阶的强相关性消除了系统中的任何低能激发。商业上存在的MnO2中普遍存在的质子(Ruetschi缺陷)所补偿的Mn空位对相稳定性具有显着影响。 Ruetschi缺陷的稳定作用可能解释了斜方锰矿和孪晶在MnO2中的存在,两者在纯净材料中都是不稳定的。我们认为Ruetschi缺陷是电化学或化学生产的合成MnO2结构复杂性的重要来源。 (C)2003 Elsevier Science(美国)。版权所有。 [参考:29]

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