Dien Vo Khuong, Pham Hai Duong, Tran Ngoc Thanh Thuy, Han Nguyen Thi, Huynh Thi My Duyen, Nguyen Thi Dieu Hien, Fa-Lin Ming
Department of Physics, National Cheng Kung University, Tainan, 701, Taiwan.
Center of General Studies, National Kaohsiung University of Science and Technology, Kaohsiung, Taiwan.
Sci Rep. 2021 Mar 2;11(1):4939. doi: 10.1038/s41598-021-84506-0.
The three-dimensional ternary LiGeO compound presents various unusual essential properties. The main features are thoroughly explored from the first-principles calculations. The concise pictures, the critical orbital hybridizations in Li-O and Ge-O bonds, are clearly examined through the optimal geometric structure, the atom-dominated electronic energy spectrum, the spatial charge densities, the atom and orbital-decomposed van Hove singularities, and the strong optical responses. The unusual optical transitions cover the red-shift optical gap, various frequency-dependent absorption structures and the most prominent plasmon mode in terms of the dielectric functions, energy loss functions, reflectance spectra, and absorption coefficients. Optical excitations, depending on the directions of electric polarization, are strongly affected by excitonic effects. The close combinations of electronic and optical properties can identify a significant orbital hybridization for each available excitation channel. The developed theoretical framework will be very useful in fully understanding the diverse phenomena of other emergent materials.
三维三元LiGeO化合物呈现出各种不同寻常的基本特性。通过第一性原理计算对其主要特征进行了全面探究。通过优化的几何结构、原子主导的电子能谱、空间电荷密度、原子和轨道分解的范霍夫奇点以及强烈的光学响应,清晰地研究了Li-O键和Ge-O键中简洁的图像以及关键的轨道杂化。从介电函数、能量损失函数、反射光谱和吸收系数来看,不同寻常的光学跃迁涵盖了红移光学带隙、各种频率依赖的吸收结构以及最显著的等离子体激元模式。取决于电极化方向的光激发受到激子效应的强烈影响。电子和光学性质的紧密结合能够为每个可用的激发通道确定显著的轨道杂化。所建立的理论框架对于全面理解其他新兴材料的各种现象将非常有用。