10 Papers
40 Citations
Yan Li is an academic researcher from Beijing University of Chemical Technology. The author has contributed to research in topics: Surface modification & Hydrophobic silica. The author has an hindex of 7, co-authored 10 publications.
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Papers
Effect of the temperature on surface modification of silica and properties of modified silica filled rubber composites
TL;DR: In this paper, a modified silica at different temperature (MSaDT) with bis(3-triethoxysilylpropyl)tetrasulfide (TESPT), and MSaDT filled solution styrene butadiene rubber (SSBR) composites were prepared to investigate the effect of temperature on surface modification of silica.
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Surface modification of silica by two-step method and properties of solution styrene butadiene rubber (SSBR) nanocomposites filled with modified silica
Yan Li,Bingyong Han,Li Liu,Fazhong Zhang,Liqun Zhang,Shipeng Wen,Yonglai Lu,Haibo Yang,Jing Shen +8 more
TL;DR: In this paper, the authors used a two-step method (TSM) to investigate the modification process in detail, and the results exhibited the advantages of TSM, and also revealed that 8% TESPT amount was suitable than 12% and 15%.
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γ-Aminopropyl triethoxysilane functionalized graphene oxide for composites with high dielectric constant and low dielectric loss
TL;DR: A facile and efficient approach was developed to simultaneously functionalize and tune the reduction state of graphene oxide (GO) with γ-aminopropyl triethoxysilane (APTES) aided by NH3 solution as mentioned in this paper.
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Preparation, morphology and superior performances of biobased thermoplastic elastomer by in situ dynamical vulcanization for 3D-printed materials
TL;DR: In this paper, the authors describe fully renewable thermoplastic vulcanizates (TPVs) consisting of synthesized biobased elastomer (PLBSI) and poly (lactic acid) (PLA) by in situ dynamic vulcanization for 3D-printed materials.
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Preparation and Properties of Novel Thermoplastic Vulcanizate Based on Bio-Based Polyester/Polylactic Acid, and Its Application in 3D Printing.
TL;DR: With an increase of 2,3-butanediol content, the PBBSI copolyester transformed from a rigid plastic to a soft elastomer and has good elasticity and rheological properties, which means it can be applied as a 3D-printing material.
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