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Jingui Duan

Researcher at Nanjing Tech University

Publications -  105
Citations -  5039

Jingui Duan is an academic researcher from Nanjing Tech University. The author has contributed to research in topics: Adsorption & Coordination polymer. The author has an hindex of 29, co-authored 93 publications receiving 3807 citations. Previous affiliations of Jingui Duan include Center for Advanced Materials & Xuzhou Institute of Technology.

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Enhanced CO2 Binding Affinity of a High-Uptake rht-Type Metal-Organic Framework Decorated with Acylamide Groups

TL;DR: An rht-type metal-organic framework prepared from M(2)(carboxylate)(4) (M = Cu, Co) paddlewheel clusters and a flexible C(3)-symmetric hexacarboxylates ligand with acylamide groups exhibits larger CO(2) uptake, an enhanced heat of adsorption, and higher selectivity toward CO(1)/N(2).
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An Adsorbate Discriminatory Gate Effect in a Flexible Porous Coordination Polymer for Selective Adsorption of CO2 over C2H2

TL;DR: The structural change by photochemical transformation of this PCP via [2 + 2] photodimerization leads to the removal of inverse CO2/C2H2 selectivity, verifying the mechanism of the guest discriminatory gate effect.
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Water-resistant porous coordination polymers for gas separation

TL;DR: In this paper, a review of water-resistant porous coordination polymers is presented with an emphasis on their adsorptive-and membrane-based gas separations, which is intended to be useful for researchers who are interested in designing water resistant PCPs and exploring promising applications for gas separation.
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Tunable Light Emission and Multiresponsive Luminescent Sensitivities in Aqueous Solutions of Two Series of Lanthanide Metal-Organic Frameworks Based on Structurally Related Ligands.

TL;DR: 2-Ln MOFs realize nearly white light emission by means of a trichromatic approach and exhibit water stability and demonstrate high selective and sensitive sensing activities toward Fe(III) and Cr(VI) in aqueous solutions, highlighting the importance of the ligand flexibility on tuning MOF structures with improved structural stability and ion-sensing properties.
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High CO2/N2/O2/CO separation in a chemically robust porous coordination polymer with low binding energy

TL;DR: In this article, a new PCP called [La(BTN)DMF]·guest (PCP-1⊃guest), which has a large aromatic organic surface and a low binding energy for high CO2 separation from four-gas mixtures (CO2-N2-O2-CO) at ambient temperature, was proposed.