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Liqun Zhang

Researcher at Beijing University of Chemical Technology

Publications -  1266
Citations -  41962

Liqun Zhang is an academic researcher from Beijing University of Chemical Technology. The author has contributed to research in topics: Natural rubber & Elastomer. The author has an hindex of 82, co-authored 1110 publications receiving 31630 citations. Previous affiliations of Liqun Zhang include Kunming University of Science and Technology & Chinese Ministry of Education.

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Stearic acid surface modifying Mg(OH)2: Mechanism and its effect on properties of ethylene vinyl acetate/Mg(OH)2 composites

TL;DR: In this paper, the effect of stearic acid surface modification of Mg(OH)2 was evaluated using ESEM images and FTIR spectra and ESEM spectra.
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The effect of respiratory synctial virus on chemokine release by differentiated airway epithelium.

TL;DR: In differentiated human airway epithelium in vitro, RSV-induced increases in IL-8 and RANTES release are predominantly in the basolateral direction, and the authors speculate that similar processes in vivo influence recruitment of leukocytes to sites of RSV infection.
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Static, rheological and mechanical properties of polymer nanocomposites studied by computer modeling and simulation

TL;DR: An overview of the progress made in past decades in the investigation of the static, rheological and mechanical properties of polymer nanocomposites studied by computer modeling and simulation is provided.
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Preparation of PET/Ag hybrid fibers via a biomimetic surface functionalization method

TL;DR: A biomimetic method for the preparation of highly conductive silver-plated polyethylene terephthalate (PET) fiber was demonstrated in this article, where the PET fibers were functionalized with a bioinspired polydopamine (PDA) coating, simply by being dispersed in a dopamine solution under mild stirring at room temperature.
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Development of SENB toughness measurement for thermoset resins

TL;DR: In this paper, a geometry-modified single-edge notched bending (SENB) fracture toughness measurement for brittle thermoset resins is presented, which is verified by double cantilever beam and compact tension measurements.