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Shenxiang Zhang

Researcher at Chinese Academy of Sciences

Publications -  18
Citations -  1152

Shenxiang Zhang is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Membrane & Gas separation. The author has an hindex of 10, co-authored 14 publications receiving 687 citations. Previous affiliations of Shenxiang Zhang include University of Science and Technology of China.

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Interfacial Design of Mixed Matrix Membranes for Improved Gas Separation Performance

TL;DR: The overall separation performance of the designed MOF/PI mixed matrix membranes surpasses the state-of-the-art 2008 Robeson upper bound for the H2 /CH4 and H1 /N2 gas pairs and approaches the 2008 upper bound.
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Cupric Phosphate Nanosheets-Wrapped Inorganic Membranes with Superhydrophilic and Outstanding Anticrude Oil-Fouling Property for Oil/Water Separation

TL;DR: A completely inorganic mesh membrane made up of cupric phosphate in a special intersected nanosheets-constructed structure with excellent anti-oil-fouling property, high separation capacity, and easily scaled-up preparation process of the membrane show great potential for practical application in treating oily wastewater.
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Polymers of intrinsic microporosity/metal–organic framework hybrid membranes with improved interfacial interaction for high-performance CO2 separation

TL;DR: In this paper, a PIM-based hybrid membrane using an amine-functionalized metal-organic framework (MOF), NH2-UiO-66, as the inorganic filler is presented.
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Hydrogel-embedded tight ultrafiltration membrane with superior anti-dye-fouling property for low-pressure driven molecule separation

TL;DR: A hydrogel-embedded tight ultrafiltration membrane composed of sodium polyacrylate-modified polyacanitrile (PAAS-m-PAN) is fabricated by a modified phase inversion process.
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MOF Nanosheet-Based Mixed Matrix Membranes with Metal-Organic Coordination Interfacial Interaction for Gas Separation.

TL;DR: Metal-organic coordination interaction is used to construct the interface in metal-organic framework (MOF) nanosheet-based polyimide MMMs where ultrathin Co-benzenedicarboxylate MOF nanosheets (CBMNs) are synthesized as fillers and a carboxyl-functionalized polyimides (6FDA-durene-DABA) is used as a polymer matrix.