铝氧簇的材料设计和功能应用
招生专业:无机化学、物理化学,有以上三个方面研究经历者将优先考虑 电子邮件:fwh@fjirsm.ac.cn |
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代表性论文:
(1) San-Tai Wang, Wei-Hui Fang,* Jian Zhang, Meltable Aluminum Molecular Rings with Fluorescence and Nonlinear Optical Properties. Angew. Chem. Int. Ed., 2024, e202400161.
(2) Ya-Jie Liu, Hai-Feng Su, Yi-Fan Sun, San-Tai Wang, Cheng-Yang Zhang, Wei-Hui Fang,* and Jian Zhang*, Supracluster Assembly of Archimedean Cages with 72 Hydrogen Bonds for the Aldol Addition Reaction. Angew. Chem. Int. Ed., 2023, 62, e202309971 (hot paper).
(3) Xiaowei Chen,# Yi-Fan Sun,# Xiaosong Wu,# Shuhui Shi, Zhongrui Wang, Jian Zhang, Wei-Hui Fang,* Weiguo Huang,* Breaking the Trade-Off Between Polymer Dielectric Constant and Loss via Aluminum Oxo Macrocycle Dopants for High-Performance Neuromorphic Electronics. Adv. Mater., 2023, 35, e2306260.
(4) Yu-Long Xie, Wei-Hui Fang* and Jian Zhang*, Aggregation of Titanium-oxo Clusters. Aggregate, 2024, e506.
(5) Ning Yang, San-Tai Wang, Chun-Sen Li, Jian Zhang, Min-Yi Zhang,* Wei-Hui Fang,* Designing External Pores of Aluminum Oxo Polyhedrons for Efficient Iodine Capture. Small, 2024, 2311083.
(6) Dan Luo, Chen-Hui Liu, Yi-Bo Chen, San-Tai Wang, Wei-Hui Fang,* and Jian Zhang, Stepwise and Controllable Synthesis of Mesoporous Heterotrimetallic Catalysts Based on Predesigned Al4Ln4 Metallocycles. Adv. Sci., 2023, 2305833.
(7) Li, Y.; Zheng, C.; Wang, S. T.; Liu, Y. J.; Fang, W.-H. *; Zhang, J., Record Aluminum Molecular Rings for Optical Limiting and Nonlinear Optics. Angew. Chem. Int. Ed. 2022, DOI: 10.1002/anie.202116563 (VIP).
(8) Ya-Jie Liu, Yi-Fan Sun, Si-Hao Shen, San-Tai Wang, Zhuang-Hua Liu, Wei-Hui Fang,* Dominic S. Wright and Jian Zhang,* Water-stable porous Al24 Archimedean solids for removal of trace iodine. Nat. Commun. 2022, DOI: 10.1038/s41467-022-34296-4.
(9) Yao, S.; Fang, W.-H.*; Sun, Y.; Wang, S. T.; Zhang, J.*, Mesoporous Assembly of Aluminum Molecular Rings for Iodine Capture. J. Am. Chem. Soc. 2021, 143, 2325-2330.
(10) Liu, Y. J.; Li, Q. H.; Li, D. J.; Zhang, X. Z.; Fang, W.-H.*; Zhang, J.*, Designable Al32-Oxo Clusters with Hydrotalcite-like Structures: Snapshots of Boundary Hydrolysis and Optical Limiting. Angew. Chem. Int. Ed. 2021, 60, 4849-4854 (hot paper).
(11) Liu, C. H.; Fang, W.-H.*; Sun, Y.; Yao, S.; Wang, S. T.; Lu, D.; Zhang, J.*, Designable Assembly of Aluminum Molecular Rings for Sequential Confinement of Iodine Molecules. Angew. Chem. Int. Ed. 2021, 60, 21426–21433 (VIP).
(12) Geng, L.; Liu, C. H.; Wang, S. T.; Fang, W.-H.*; Zhang, J.*, Designable Aluminum Molecular Rings: Ring Expansion and Ligand Functionalization. Angew. Chem. Int. Ed. 2020, 59, 16735-16740.
(13) Liu, Y.-J.; Fang, W.-H.*; Zhang, L.*; Zhang, J., Recent advances in heterometallic polyoxotitanium clusters. Coordin. Chem. Rev. 2020, 404, 213099.
(14) Fang, W.-H.; Yang, G.-Y.*, Induced Aggregation and Synergistic Coordination Strategy in Cluster Organic Architectures. Acc. Chem. Rev. 2018, 51, 2888-2896.
(15) Fang, W.-H.; Zhang, L.*; Zhang, J.*, Synthetic strategies, diverse structures and tuneable properties of polyoxo-titanium clusters. Chem. Soc. Rev. 2018, 47, 404-421.
(16) Fang, W.-H.; Zhang, L.*; Zhang, J.*, A 3.6 nm Ti52-Oxo Nanocluster with Precise Atomic Structure. J. Am. Chem. Soc. 2016, 138, 7480-7483.