J
Jing-Quan Sha
Researcher at Heilongjiang University
Publications - 13
Citations - 529
Jing-Quan Sha is an academic researcher from Heilongjiang University. The author has contributed to research in topics: Polyoxometalate & Helix. The author has an hindex of 12, co-authored 13 publications receiving 501 citations. Previous affiliations of Jing-Quan Sha include Harbin Normal University & Jiamusi University.
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Journal ArticleDOI
Assembly of Polyoxometalate-Based Hybrids with Different Helical Channels upon Subtle Ligand Variation
Meng-Ting Li,Meng-Ting Li,Jing-Quan Sha,Jing-Quan Sha,Xi-Ming Zong,Jing-Wen Sun,Pengfei Yan,Liang Li,Xiao-Ning Yang +8 more
TL;DR: In this article, the authors reported on the assembly of three polyoxometalate-based organic-inorganic hybrid compounds with different helical channels, [Ag3(H2pyttz-I)2][PMo12O40] (1), [Ag6(H 2pyttzi-II)4][CoW12o40]·2H2O (2), and [Ag7(H pyttz)-II)3[GeW12O 40]·7H2
Journal ArticleDOI
Significant Surface Modification of Polyoxometalate by Smart Silver-tetrazolate Units
Jing-Quan Sha,Jing-Quan Sha,Li-Ye Liang,Jing-Wen Sun,Aixiang Tian,Pengfei Yan,Guangming Li,Cheng Wang +7 more
TL;DR: In this article, two interesting hybrids based on polyoxometalates (POMs) and silver-tetrazolate subunits, H[Ag11(pytz)6(H2O)3(P2W18O62)]·H 2O (1), and H [Ag17(πtz)12(h2O),6(PMo12O40)2] (2) (pytz = 5-(2-pyridyl)tetrabrazolate), have been synthesized and structurally characterized.
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Syntheses Study of Keggin POM Supporting MOFs System
TL;DR: In this article, the influence of reactive conditions on the structures of Keggin POM supporting metal-organic frameworks (MOFs) was investigated and five new compounds were synthesized by tuning the reactive species and pH values and characterized by routine method and single-crystal X-ray crystallography.
Journal ArticleDOI
Secondary spacer modulated assembly of polyoxometalate based metal–organic frameworks
Jing-Quan Sha,Jing-Quan Sha,Jing-Wen Sun,Meng-Ting Li,Cheng Wang,Guangming Li,Pengfei Yan,Long-Jiang Sun +7 more
TL;DR: It can be observed from the architectures of compounds 1-5 that the secondary spacers have a great effect on the structures of the MOFs, which results in the formation of various dimensional POMOF compounds.
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An unprecedented 3D POM-Ag architecture with intertwined and homological helical structures.
TL;DR: X-ray diffraction analysis reveals that the title compound is constructed by the 2D Ag-pyttz coordination polymer and 3DAg-POM architecture with helix obtaining an unprecedented 3D POM-Ag inorganic architecture.