Nguyen-Ha Bao-Ngan, Tam Nguyen Minh, Pham-Ho My Phuong, Nguyen Minh Tho
Faculty of Chemical Engineering, Ho Chi Minh City University of Technology (HCMUT) 268 Ly Thuong Kiet Street, District 10 Ho Chi Minh City Vietnam
Vietnam National University Ho Chi Minh City Linh Trung Ward, Thu Duc City Ho Chi Minh City Vietnam.
RSC Adv. 2024 Oct 30;14(47):34718-34732. doi: 10.1039/d4ra06541g. eCollection 2024 Oct 29.
A comprehensive study using density functional theory with the PBE functional and the Def2-TZVP basis set investigates the pure Sc and doped Sc B clusters with = 1-13 in three charged states. B@Sc clusters emerge as the smallest doped cages identified so far, distinguished by their near-perfect octahedral geometry, with a B atom centrally enclosed in the Sc cages. Structural analysis reveals size-dependent trends, with a critical size at = 6, marking a transition from exohedral to endohedral configuration, and a shift in the substitution-addition pattern of the B atom within the pure Sc host. Incorporation of a B atom induces electron redistribution, stabilizes high spin states and reduces energetic degeneracy. B-doping enhances the stability of the initial Sc clusters, showing a consistent preference for cationic isomers. A molecular orbital (MO) analysis provides a detailed explanation for the observed energy degeneracy among various stable spin states by delving into their electronic configurations.
一项使用密度泛函理论结合PBE泛函和Def2-TZVP基组的综合研究,对具有1至13个原子且处于三种电荷态的纯Sc团簇和掺杂ScB团簇进行了研究。B@Sc团簇是迄今为止所确定的最小的掺杂笼状结构,其特点是具有近乎完美的八面体几何结构,一个B原子被包围在Sc笼的中心。结构分析揭示了尺寸依赖性趋势,在n = 6时存在一个临界尺寸,标志着从外表面构型到内包构型的转变,以及纯Sc主体内B原子取代-添加模式的转变。B原子的掺入引起电子重新分布,稳定高自旋态并降低能量简并性。B掺杂增强了初始Sc团簇的稳定性,对阳离子异构体表现出一致的偏好。分子轨道(MO)分析通过深入研究各种稳定自旋态的电子构型,为观察到的能量简并提供了详细解释。