Hua Yang
Liaocheng University
41 Papers
116 Citations
Hua Yang is an academic researcher from Liaocheng University. The author has contributed to research in topics: Metallacrown & Chemistry. The author has an hindex of 9, co-authored 37 publications.
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Papers
A novel 9-MC-3 and 15-MC-6 onset stacked metallacrown single-molecule magnet: synthesis and crystal structure.
Suna Wang,Lingqian Kong,Hua Yang,Zhoutong He,Zheng Jiang,Dacheng Li,Suyuan Zeng,Meiju Niu,You Song,Jianmin Dou +9 more
TL;DR: A novel enneanuclear manganese complex, 1, which contains an unusual [Mn(9)O(4)] core with an unprecedented defective "supertetrahedron" topology based on two parallel, onset stacked 9-MC-3 and 15- MC-6 metallacrown subunits, was synthesized.
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Co-Doped FeS2 with a porous structure for efficient electrocatalytic overall water splitting
Gao Lingfeng,Guo Chengying,Xuejing Liu,Ma Xiaojing,Mingzhu Zhao,Xuan Kuang,Hua Yang,Xiaojiao Zhu,Xu Sun,Qin Wei +9 more
TL;DR: In this paper, active cobalt-doped pyrite nanospheres with a porous structure are fabricated for the first time as advanced catalysts for water splitting in an alkaline solution.
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A Cd-MOF fluorescence sensor with dual functional sites for efficient detection of metal ions in multifarious water environments
TL;DR: In this paper, a new LMOF LCU-109 has been fabricated by Sharpless in situ tetrazole synthesis system assisted by polycarboxylic O-donor ligand and showed a 2D binodal (3,6)-connected kgd structure with multiple N and O dual-functional sites for detecting guest metal ions.
27
Five Lanthanide-Based Metal–Organic Frameworks Built from a π-Conjugated Ligand with Isophthalate Units Featuring Sensitive Fluorescent Sensing for DMF and Acetone Molecules
TL;DR: In this article, a π-conjugated ligand with tetracarboxylate group, 5,5′-(naphthalene-1,5-diyl)diisophthalic acid, has been synthesized solvothermally.
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In situ construction of 0D CoWO4 modified 1D Mn0.47Cd0.53S for boosted visible-light photocatalytic H2 activity and photostability
TL;DR: In this article, various amounts of CoWO4 as a novel metal-free material were loaded on Mn0.47Cd0.53S (MCS) nanorods for photocatalytic hydrogen production reaction.
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