Liu Chuan, Zhang Ting, Ye Xiangju, Zhang Xuemei, Zhang Shengli
College of Chemistry and Materials Engineering, Anhui Science and Technology University Fengyang Anhui Province 233100 China
Institute of Optoelectronics & Nanomaterials Herbert Gleiter Institute of Nanoscience, College of Materials Science and Engineering, Nanjing University of Science and Technology Nanjing 210094 China.
RSC Adv. 2018 Oct 8;8(60):34374-34379. doi: 10.1039/c8ra06742b. eCollection 2018 Oct 4.
The structure, composition, and electronic property of mixed-cation borohydrides are of significant importance for understanding and improving their thermodynamic and kinetic activities. Conventional density functional theory (DFT) fails to correctly describe the electronic structure of the system due to insufficient cancellation of the self-interaction energy and underestimation of the band gap. In the present work, we present a systematic investigation of the structural and electronic properties of KY(BH) for the first time at the DFT+U level of theory. It is found that the LDA+U method underestimates the lattice volume by ∼17.36%, while the PBE+U and PW91+U methods show good agreement with the experimental value at = 3 and = 4, respectively. The total energy of KY(BH) calculated by PW91+U method at = 4 is 0.97 eV lower than that calculated by PBE+U method at = 3. We suppose that the PW91+U method is more suitable for the structural and electronic properties study of KY(BH) due to the lower total energy. K connects with BH complex through electrostatic attraction, while weak covalent interaction exists between Y and BH complex.
混合阳离子硼氢化物的结构、组成和电子性质对于理解和改善其热力学和动力学活性具有重要意义。由于自相互作用能抵消不足和带隙低估,传统密度泛函理论(DFT)无法正确描述该体系的电子结构。在本工作中,我们首次在DFT+U理论水平上对KY(BH)的结构和电子性质进行了系统研究。结果发现,LDA+U方法使晶格体积低估了约17.36%,而PBE+U和PW91+U方法分别在U = 3和U = 4时与实验值吻合良好。PW91+U方法在U = 4时计算得到的KY(BH)总能量比PBE+U方法在U = 3时计算得到的总能量低0.97 eV。我们认为,由于总能量较低,PW91+U方法更适合用于KY(BH)的结构和电子性质研究。K通过静电吸引与BH 络合物相连,而Y与BH 络合物之间存在弱共价相互作用。