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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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High thermal conductive silicone rubber composites constructed by strawberry-structured Al2O3-PCPA-Ag hybrids

TL;DR: In this article, high thermal conductive silicone rubber composites were prepared by incorporating strawberry-structured alumina-poly(catechol-polyamine)-silver (denoted as Al2O3-PCPA-Ag) thermal conductives hybrids.
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Special electrical conductivity of carbon black-filled two-phased thermoplastic vulcanizates

TL;DR: In this paper, the electrical properties of carbon black (CB)-filled two-phased thermoplastic vulcanizates (based on ethylene-propylene-diene copolymer and polypropylene, TPV) were investigated.
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Different dynamics and pathway of disulfide bonds reduction of two human defensins, a molecular dynamics simulation study

TL;DR: The structure of hBD‐3 was found to be more dynamic and flexible than HD5, based on RMSD, RMSF, and radius of gyration calculations, and the disulfide bridge breaking order of HD5 and h BD‐3 in reducing condition was predicted by two kinds of methods, which gave consistent results.
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A combined molecular dynamics simulation and experimental method to study the compatibility between elastomers and resins

TL;DR: In this paper, the influence of resin composition on the compatibility between rubber and resins was studied by employing atomistic molecular dynamics (MD) simulation, and different compatibility orders obtained from the solubility parameter (δ), binding energy (Ebinding), mean square displacement (MSD), and the related self-diffusion coefficient (Ds) match well with each other.
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Nanosilica filled poly(glycerol‐sebacate‐citrate) elastomers with improved mechanical properties, adjustable degradability, and better biocompatibility

TL;DR: The influence of mn-silica loadings on the structure and properties of the composites was studied in this paper, where the authors showed that the mn silica filled composites exhibited excellent comprehensive properties relative to the unfilled elastomers, and the tensile strength improved from 0.9 MPa to 5.3 MPa.