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基于密度泛函理论的LiNHBH与(LiH)ₙ(n = 1 - 5)团簇的反应机理研究

Reaction Mechanism Study of LiNHBH and (LiH) (n = 1-5) Clusters Based on Density Functional Theory.

作者信息

Dong Xiao, Yuan Rong, Li Genzhuang, Du Aochen

机构信息

Xinjiang Laboratory of Phase Transitions and Microstructures in Condensed Matters, College of Physical Science and Technology, Yili Normal University, Yining 835000, China.

出版信息

Molecules. 2025 Feb 17;30(4):929. doi: 10.3390/molecules30040929.

Abstract

Hydrogen energy is an ideal clean energy source for the future. In the promotion and application of hydrogen energy, the safe and effective storage of hydrogen needs to be addressed. LiNHBH, as an important hydrogen storage material, can reversibly store hydrogen, but it has the problem of a relatively high hydrogen release temperature. (LiH) plays a good regulatory role in the metal-N-H system and plays an important role. Using density functional theory, the reaction mechanism of LiNHBH and (LiH) (n = 1-5) clusters was theoretically calculated and analyzed. The frontier orbitals of LiNHBH (LiAB), LiNHBH-LiH (Li2AB), and LiNH-LiH (Li2A) were compared and analyzed, and the dissociation energies of hydrogen atoms at different sites were discussed. The results show that the dehydrogenation of LiNHBH with (LiH) (n = 1-5) clusters is more likely to occur through the combination of H(Li)···H(N), and the minimum reaction energy barrier can reach 113.34 kJ/mol. In the LiNHBH-LiH system, the presence of -BH and -LiH groups has a significant effect on the hydrogen release performance of the system. The order of hydrogen atom dissociation energies at different positions in LiAB, Li2AB, and Li2A is ΔE > ΔE > ΔE. The dehydrogenation performance of Li2AB is better than that of LiAB and Li2A.

摘要

氢能是未来理想的清洁能源。在氢能的推广应用中,需要解决氢气的安全有效存储问题。LiNHBH作为一种重要的储氢材料,能够可逆地存储氢气,但存在氢气释放温度相对较高的问题。(LiH)在金属-N-H体系中起到良好的调控作用且发挥着重要作用。利用密度泛函理论,对LiNHBH与(LiH)(n = 1 - 5)团簇的反应机理进行了理论计算与分析。对比分析了LiNHBH(LiAB)、LiNHBH-LiH(Li2AB)和LiNH-LiH(Li2A)的前线轨道,并讨论了不同位点氢原子的解离能。结果表明,LiNHBH与(LiH)(n = 1 - 5)团簇的脱氢更倾向于通过H(Li)···H(N)的结合发生,最小反应能垒可达113.34 kJ/mol。在LiNHBH-LiH体系中,-BH和-LiH基团的存在对体系的氢气释放性能有显著影响。LiAB、Li2AB和Li2A中不同位置氢原子的解离能顺序为ΔE > ΔE > ΔE。Li2AB的脱氢性能优于LiAB和Li2A。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08c6/11857906/01966e9b766d/molecules-30-00929-g001.jpg

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