Yang Zhaofeng, Rehman Aziz U, Cao Zhenzhu, Yang Jucai
School of Chemical Engineering, Inner Mongolia University of Technology, Inner Mongolia Key Laboratory of Theoretical and Computational Chemistry Simulation Hohhot 010051 Peoples Republic of China
School of Energy and Power Engineering, Inner Mongolia University of Technology Hohhot 010051 Peoples Republic of China.
RSC Adv. 2022 Aug 10;12(34):22020-22030. doi: 10.1039/d2ra04037a. eCollection 2022 Aug 4.
The structural growth of Gd-doped germanium anionic nanoclusters, GdGe ( = 5-18), has been explored quantum chemistry calculations using the mPW2PLYP method and an unprejudiced structural searching technique known as ABCluster. The optimized geometries exhibited that when = 10-14, the structural evolution favors the Gd-linked configuration where the Gd atom as a connector bridges two Ge subgroups, while the Gd atom is encapsulated in a closed cage-like Ge frame when = 15-18. The properties like magnetic moment, charge transfer, relative stability, HOMO-LUMO gap, photoelectron spectra, and infrared and Raman spectra have been predicted. The information of these spectra could provide extra approaches to experimentally determine the electronic structures and equilibrium configuration of these compounds. The largest spin magnetic moment of 7 is attained half-filled 4f states. The GdGe nanocluster is determined to be a superatom because its total valence of 75 electrons can be distributed to the orbital sequence of 1S1P(4f)1D1F2S2P1G2P2D, which complies with not only Hund's rule, but also the spherical jellium model. Particularly, its UV-Vis spectra match well with solar energy distribution. Such materials act as nano multifunctional building units potentially used in solar energy converters or ultra-highly sensitive near-infrared photodetectors.
通过使用mPW2PLYP方法和一种名为ABCluster的无偏见结构搜索技术进行量子化学计算,探索了钆掺杂锗阴离子纳米团簇GdGeₙ(n = 5 - 18)的结构生长。优化后的几何结构表明,当n = 10 - 14时,结构演化有利于Gd连接构型,其中Gd原子作为连接器桥接两个Ge亚组,而当n = 15 - 18时,Gd原子被封装在一个封闭的笼状Ge框架中。预测了磁矩、电荷转移、相对稳定性、HOMO - LUMO能隙、光电子能谱以及红外和拉曼光谱等性质。这些光谱信息可以为实验确定这些化合物的电子结构和平衡构型提供额外的方法。通过半充满的4f态获得了7μB的最大自旋磁矩。GdGeₙ纳米团簇被确定为一种超原子,因为其75个电子的总价电子可以分布到1S1P(4f)1D1F2S2P1G2P2D的轨道序列中,这不仅符合洪德规则,也符合球形凝胶模型。特别地,其紫外 - 可见光谱与太阳能分布匹配良好。这类材料作为纳米多功能构建单元,有望用于太阳能转换器或超高灵敏度近红外光电探测器。