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Ning-Hai Hu

Researcher at Chinese Academy of Sciences

Publications -  56
Citations -  1885

Ning-Hai Hu is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Crystal structure & Coordination polymer. The author has an hindex of 21, co-authored 56 publications receiving 1856 citations.

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Assembly of the Highest Connectivity Wells-Dawson Polyoxometalate Coordination Polymer: the Use of Organic Ligand Flexibility

TL;DR: The structural analyses reveal that the length of flexible bis(triazole) ligands and metal ion coordination geometries have a synergic influence on the structures of this series of Wells-Dawson polyoxoanion-based hybrid compounds.
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Modified Polyoxometalates: Hydrothermal Syntheses and Crystal Structures of Three Novel Reduced and Capped Keggin Derivatives Decorated by Transition Metal Complexes

TL;DR: Three novel polyoxometalate derivatives decorated by transition metal complexes have been hydrothermally synthesized.
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High-Dimensional Assembly Depending on Polyoxoanion Templates, Metal Ion Coordination Geometries, and a Flexible Bis(imidazole) Ligand

TL;DR: Investigation of their structural relations shows the important template role of the polyoxoanions and the synergetic interactions among the polyxoanions, transition-metal ions, and flexible ligand in the assembly process.
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Novel polyoxometalate-templated, 3-D supramolecular networks based on lanthanide dimers: synthesis, structure, and fluorescent properties of [Ln2(DNBA)4(DMF)8][Mo6O19] (DNBA = 3,5-dinitrobenzoate)

TL;DR: The title compounds represent the first examples of 3-D carboxylate-bridged lanthanide dimer supramolecular "host" networks formed by pi-pi stacking and hydrogen-bonding interactions encapsulating noncoordinating "guest" polyoxoanion species.
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A new α-Keggin type polyoxometalate coordinated to four silver complex moieties: {PW9V3O40[Ag(2,2′-bipy)]2[Ag2(2,2′-bipy)3]2}

TL;DR: In this paper, a new polyoxometalate derivative of the α-Keggin polyoxoanion [PW9V3O40]6−via the surface bridging oxygen atoms was characterized by a single crystal X-ray diffraction.