Adhikari Puja, Khaoulaf Redouane, Ez-Zahraouy Hamid, Ching Wai-Yim
Department of Physics and Astronomy, University of Missouri Kansas City, Kansas City, MO 64110, USA.
Department of Physics, Laboratory of Optoelectronics and Physical Chemistry of Materials, Faculty of Sciences, University lbn Tofail, Kenitra, Morocco.
R Soc Open Sci. 2017 Dec 6;4(12):170982. doi: 10.1098/rsos.170982. eCollection 2017 Dec.
The electronic structure and interatomic bonding of pyrophosphate crystal KMg (HPO)·2HO are investigated for the first time showing complex interplay of different types of bindings. The existing structure from single-crystal X-ray diffraction is not sufficiently refined, resulting in unrealistic short O─H bonds which is rectified by high-precision density functional theory (DFT) calculation. KMg (HPO)·2HO has a direct gap of 5.22 eV and a small electron effective mass of 0.14 . Detailed bond analysis between every pair of atoms reveals the complexity of various covalent, ionic, hydrogen bonding and bridging bonding and their sensitive dependence on structural differences. The K--O bonds are much weaker than Mg--O bonds and contributions from the hydrogen bonds are non-negligible. Quantitative analysis of internal cohesion in terms of total bond order density and partial bond order density divulges the relative importance of different types of bonding. The calculated optical absorptions show multiple peaks and a sharp Plasmon peak at 23 eV and a refractive index of 1.44. The elastic and mechanical properties show features unique to this low-symmetry crystal. Phonon calculation gives vibrational frequencies in agreement with reported Raman spectrum. These results provide new insights indicating that acidic pyrophosphates could have a variety of unrealized applications in advanced technology.
首次对焦磷酸晶体KMg(HPO₄)·2H₂O的电子结构和原子间键合进行了研究,结果表明不同类型键合之间存在复杂的相互作用。通过单晶X射线衍射得到的现有结构不够精确,导致出现不符合实际的短O─H键,而高精度密度泛函理论(DFT)计算纠正了这一问题。KMg(HPO₄)·2H₂O具有5.22 eV的直接带隙和0.14的小电子有效质量。对每对原子之间的键合进行详细分析,揭示了各种共价键、离子键、氢键和桥键的复杂性及其对结构差异的敏感依赖性。K─O键比Mg─O键弱得多,氢键的贡献不可忽略。根据总键序密度和部分键序密度对内部内聚性进行定量分析,揭示了不同类型键合的相对重要性。计算得到的光吸收显示出多个峰,在23 eV处有一个尖锐的等离子体峰,折射率为1.44。弹性和力学性能显示出这种低对称晶体特有的特征。声子计算得到的振动频率与报道的拉曼光谱一致。这些结果提供了新的见解,表明酸性焦磷酸盐在先进技术中可能有各种未实现的应用。