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通过环状碳酸酯氨解制备非异氰酸酯热塑性聚羟基聚氨酯弹性体:羟基在控制纳米相分离中的关键作用

Nonisocyanate Thermoplastic Polyhydroxyurethane Elastomers via Cyclic Carbonate Aminolysis: Critical Role of Hydroxyl Groups in Controlling Nanophase Separation.

作者信息

Leitsch Emily K, Beniah Goliath, Liu Kun, Lan Tian, Heath William H, Scheidt Karl A, Torkelson John M

机构信息

The Dow Chemical Company, Freeport, Texas 77541 United States.

出版信息

ACS Macro Lett. 2016 Apr 19;5(4):424-429. doi: 10.1021/acsmacrolett.6b00102. Epub 2016 Mar 9.

Abstract

Thermoplastic polyhydroxyurethanes (PHUs) were synthesized from cyclic carbonate aminolysis. Because of the hydroxyl groups in PHU, the choice of soft segment has a dramatic influence on nanophase separation in polyether-based PHUs. Use of a polyethylene glycol-based soft segment, which results in nanophase-separated thermoplastic polyurethane elastomers (TPUs), leads to single-phase PHUs that flow under the force of gravity. This PHU behavior is due to major phase mixing caused by hydrogen bonding of hard-segment hydroxyl groups to the soft-segment ether oxygen atoms. This hydrogen bonding can be suppressed by using polypropylene glycol-based or polytetramethylene oxide (PTMO)-based soft segments, which reduce hydrogen bonding by steric hindrance and dilution of oxygen atom content and result in nanophase-separated PHUs with robust, tunable mechanical properties. The PTMO-based PHUs exhibit reversible elastomeric response with hysteresis, like that of conventional TPUs. Because of nanophase separation with broad interphase regions possessing a wide range of local composition, the PTMO-based PHUs also demonstrate potential as novel broad-temperature-range acoustic and vibration damping materials, a function not observed with TPUs.

摘要

热塑性聚羟基聚氨酯(PHU)由环状碳酸酯氨解反应合成。由于PHU中存在羟基,软段的选择对聚醚基PHU中的纳米相分离有显著影响。使用聚乙二醇基软段会导致纳米相分离的热塑性聚氨酯弹性体(TPU),而使用该软段会使PHU形成单相,在重力作用下流动。这种PHU行为是由于硬段羟基与软段醚氧原子之间的氢键作用导致的主要相混合。通过使用聚丙二醇基或聚四氢呋喃(PTMO)基软段可以抑制这种氢键作用,它们通过空间位阻和稀释氧原子含量来减少氢键,从而得到具有稳健且可调机械性能的纳米相分离PHU。基于PTMO的PHU表现出具有滞后现象的可逆弹性响应,类似于传统TPU。由于具有宽相间区域且局部组成范围广泛的纳米相分离,基于PTMO的PHU还展现出作为新型宽温度范围声学和振动阻尼材料的潜力,这是TPU所没有的功能。

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