2016RSC AdvancesRequires access

Energetic hybrid polymer network (EHPN) through facile sequential polyurethane curation based on the reactivity differences between glycidyl azide polymer and hydroxyl terminated polybutadiene

Abbas Tanver, Fida Rehman, Aisha Wazir, Syed Khalid, Song Ma, Xiaoyu Li, Yunjun Luo, Mu‐Hua Huang

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Abstract

To improve the thermo-mechanical properties of glycidyl azide polymer and hydroxyl terminated polybutadiene based propellants, a facile sequential polymerization approach was used to prepare an energetic hybrid polymer network by stepwise curation.

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To improve the thermo-mechanical properties of glycidyl azide polymer and hydroxyl terminated polybutadiene based propellants, a facile sequential polymerization approach was used to prepare an energetic hybrid polymer network by stepwise curation.

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Available abstract

To improve the thermo-mechanical properties of glycidyl azide polymer and hydroxyl terminated polybutadiene based propellants, a facile sequential polymerization approach was used to prepare an energetic hybrid polymer network by stepwise curation.

Key concepts: Polybutadiene, Hydroxyl-terminated polybutadiene, Polymer, Polyurethane, Azide, Polymerization, Materials science, Polymer chemistry

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Energetic hybrid polymer network (EHPN) through facile sequential polyurethane curation based on the reactivity differences between glycidyl azide polymer and hydroxyl terminated polybutadiene — Research Paper | ScholarLens