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Lattice and local-mode vibrations in anhydrous and protonized LiMn2O4 spinels from first-principles theory

机译:基于第一性原理的无水和质子化的LiMn2O4尖晶石的晶格和局部模式振动

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The phonon dispersion relations and density of states of anhydrous LiMn2O4 spinels have been studied using first-principles theory. Above the acoustic phonon branches, the heavy Mn ions and the light Li ions separately contribute primarily to the optic phonons of low (similar to 180 to 280 cm(-1)) and high (>400 cm(-1)) energies, respectively, whereas the O ions partake in lattice vibrations over a wide range of frequencies (180-644 cm(-1)). The measured phonon density of states of a LiMn2O4 powder corroborates the calculated results. Symmetry analysis of the calculated Brillouin-zone center modes allows a detailed comparison with the Raman-and infrared-active modes reported in the literature. First-principles calculations were also performed on protonized LiMn2O4 spinels. Each proton on the (001) surface of (Li, H)(x)Mn2O4 spinels, expected near an '8a' site, is bonded to one oxygen neighbor to form one (-OH) unit, similar to those in the bulk. Local structural relaxation leads to shifting of the surface proton inwards to the subsurface Mn-O layer. The vibrational frequencies of the protons are almost constant, other than a slight dependence on the Li/H concentration, regardless of the protons being in the bulk or on the surface.
机译:利用第一性原理研究了无水LiMn2O4尖晶石的声子色散关系和态密度。在声子的声子分支上方,重Mn离子和轻Li离子分别分别对低能(类似于180至280 cm(-1))和高能(> 400 cm(-1))的声子产生贡献。 ,而O离子则在很宽的频率范围内(180-644 cm(-1))参与晶格振动。测得的LiMn2O4粉末状态的声子密度证实了计算结果。计算的布里渊区中心模式的对称性分析可以与文献中报道的拉曼和红外激活模式进行详细比较。还对质子化的LiMn2O4尖晶石进行了第一性原理计算。 (Li,H)(x)Mn2O4尖晶石(001)表面上的每个质子,预计在一个'8a'位置附近,与一个氧邻域键合以形成一个(-OH)单元,与主体中的相似。局部结构弛豫导致表面质子向内转移至表面Mn-O层。质子的振动频率几乎是恒定的,除了对Li / H浓度的依赖程度很小以外,与质子是处于整体还是表面无关。

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