Zhang Zi-He, Wei Shi-Ru, Ye Lian-Wei, He Yang, Hu Han-Shi, Li Jun
Department of Chemistry and Engineering Research Center of Advanced Rare-Earth Materials of Ministry of Education, Tsinghua University, Beijing 10084, China.
Department of Chemistry, Southern University of Science and Technology, Shenzhen 518055, China.
Inorg Chem. 2024 Oct 21;63(42):19619-19629. doi: 10.1021/acs.inorgchem.4c02726. Epub 2024 Oct 7.
Actinides with 5f6d7s valence orbitals feature special physicochemical properties different from those of the other elements. Actinide-based two-dimensional (2D) materials combine the distinctive physics of actinides with the quantum size effect of 2D materials, but relevant studies are scarce. Since Th has a valence electron configuration of 6d7s like Ti, and Ti-based MXenes show excellent stability and versatile applications, whether Th can form stable MXenes has become an intriguing question. Herein, we designed ThN, ThN, and ThN MXenes and investigated their physical properties, functionalization, and potential applications using density functional theory. Their stabilities are validated by global minimum search, phonon spectra, ab initio molecular dynamics, enthalpy of formation, and energy above the hull. All the Th-N MXenes exhibit metallic properties and are stabilized by the electrostatic interaction between Th and N ions, as well as the covalent bonding interaction between the Th 6d/5f and N 2p/2s orbitals. The H-, O-, and F-functionalizationN MXene improve its stability while preserving its metallicity, and the O-functionalized ThN MXene shows promising catalytic activity for hydrogen evolution. The thorium nitride MXenes enrich the family of actinide-based 2D materials and extend our understanding of the structures and properties induced by actinide elements in low-dimensional materials.
具有5f6d7s价轨道的锕系元素具有不同于其他元素的特殊物理化学性质。基于锕系元素的二维(2D)材料将锕系元素独特的物理性质与二维材料的量子尺寸效应结合在一起,但相关研究较少。由于钍的价电子构型与钛一样为6d7s,且基于钛的MXenes表现出优异的稳定性和广泛的应用,钍是否能形成稳定的MXenes已成为一个有趣的问题。在此,我们设计了ThN、ThN和ThN MXenes,并使用密度泛函理论研究了它们的物理性质、功能化及潜在应用。通过全局最小搜索、声子谱、从头算分子动力学、生成焓和凸包以上能量验证了它们的稳定性。所有的Th-N MXenes都表现出金属性质,并通过Th和N离子之间的静电相互作用以及Th 6d/5f与N 2p/2s轨道之间的共价键相互作用得以稳定。H-、O-和F-功能化的N MXene提高了其稳定性,同时保留了其金属性,且O功能化的ThN MXene对析氢表现出有前景的催化活性。氮化钍MXenes丰富了基于锕系元素的二维材料家族,并扩展了我们对低维材料中锕系元素诱导的结构和性质的理解。