4.5 Article

Structure and Properties of Isotactic Polypropylene/Polybutene-1 In-reactor Alloys

Journal

CHINESE JOURNAL OF POLYMER SCIENCE
Volume 38, Issue 12, Pages 1382-1391

Publisher

SPRINGER
DOI: 10.1007/s10118-020-2468-9

Keywords

Polybutene-1; Alloy; Block copolymer; Structure; Property

Funding

  1. Major Scientific and Technological Innovation Project of Shandong Province [2019JZZY010352]
  2. Natural Science Foundation of Shandong Province [ZR2019MB072]
  3. Taishan Scholar Program

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The composition and structure of polymer largely determine the properties of its final products. As a novel polymer material, the composition, structure, and properties of the isotactic polypropylene/polybutene-1 in-reactor alloy (iPP/iPB alloy) synthesized by sequential two-stage polymerization with Ziegler-Natta catalyst were correlated for the first time in this work. TheiPP/iPB alloy was fractionated by temperature rising elution fractionation (TREF) in a broad temperature ranged from -30 degrees C to 140 degrees C, and the chain microstructures and sequence distributions of isolated fractions were analyzed by DSC, GPC,C-13-NMR, and FTIR. The iPP/iPB alloy was composed of five components, namely high isotactic PB (iPB, 85.8 wt%), medium isotactic PB (mPB, 5.1 wt%), poly((butene-1)-block-propylene) copolymers (PB-b-PP, 4.1 wt%) which contained PB and PP blocks with different lengths according to the isolation temperature, isotactic PP (iPP, 2.7 wt%), and atactic PB (aPB, 2.3 wt%). Compared to other commercial pipe materials, theiPP/iPB alloy presented outstanding thermal creep resistance and gas permeability resistance, high strength and low deformation at high temperature, and appropriate flexural strength. The roles of PP and PB-b-PP components in the alloy were interpreted. This work is expected to elucidate the potential application of iPP/iPB alloy as pipe materials and provide solutions for the design and synthesis of high performance pipe materials.

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