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Jian Jin

Researcher at Soochow University (Suzhou)

Publications -  388
Citations -  22696

Jian Jin is an academic researcher from Soochow University (Suzhou). The author has contributed to research in topics: Membrane & Chemistry. The author has an hindex of 68, co-authored 323 publications receiving 17018 citations. Previous affiliations of Jian Jin include Zhengzhou University & Northeast Agricultural University.

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Formation of Positively Charged Copper Hydroxide Nanostrands and Their Structural Characterization

TL;DR: In this paper, extremely narrow copper hydroxide nanostrands with a diameter of 2.5 nm were obtained by controlling the pH of an aqueous copper nitrate solution with weak bases.
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pH-Induced Non-Fouling Membrane for Effective Separation of Oil-in-Water Emulsion

TL;DR: In this article, a pH-induced non-fouling membrane by grafting hyperbranched poly (ethylene imine) (PEI) onto PVDF/polyacrylic acid grafted PVDF blend membrane for effectively separating viscous soybean oil-in-water emulsion was presented.
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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.
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Effect of soil type and soybean genotype on fungal community in soybean rhizosphere during reproductive growth stages

TL;DR: Fungal communities in soybean rhizosphere from reproductive growth stages R1 (beginning bloom) to R8 (full maturity) were studied based on the polymerase chain reaction-denaturing gradient gel electrophoresis (DGGE) banding patterns of partial rDNA internal transcribed spacer regions (ITS1) and sequencing methods.
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Carbon Molecular Sieve Membranes Derived from Tröger's Base-Based Microporous Polyimide for Gas Separation.

TL;DR: Gas-permeation tests revealed that the comprehensive gas-separation performance of the TB-CMS membranes was greatly enhanced relative to that of most state-of-the-art CMS membranes derived from polyimides reported so far.