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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Exploring long-range connectivity of the hard segment phase in model tri-segment oligomeric polyurethanes via lithium chloride
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Exploring long-range connectivity of the hard segment phase in model tri-segment oligomeric polyurethanes via lithium chloride

机译:探索三段式低聚聚氨酯模型中硬段相通过氯化锂的长程连通性

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The influence of the extent of hydrogen bonding in mediating the long-range connectivity and percolation of the hard segment phase in model tri-segment oligomeric polyurethanes(PU)was explored by using LiCl as a molecular probe.A 22 wt% hard segment containing model PU plaque based on a mono-functional oligomeric polyether,80:20 2,4:2,6 isomeric mixture of toluene diisocyanate,and water as a chain extender was employed.Samples cast from 20 wt% solutions in dimethyl acetamide were utilized.The tapping-mode atomic force microscopy(AFM)phase image of the solution cast film sample(soft segment T_g - 63 deg C)without LiCl exhibited the presence of long interconnected ribbon-like hard domains.The long-range connectivity and percolation of the hard phase that arose during plaque formation gave rise to a brittle rigid solid.A systematic break-up of the hard domains was also observed by AFM when the concentration of LiCl was increased from 0.1 to 1.5 wt%.DSC analysis indicated that the samples were able,however,to maintain a microphase separated morphology even at the highest LiCl concentration utilized in the study.FT-IR data confirmed that LiCl interacts with the hard domains of the model PU samples by disrupting the hydrogen bonding capability of the urea hard segments.A systematic softening of the samples was observed with increasing LiCl content as confirmed by thermomechanical analysis.Thus,this study indicates that hydrogen bonding plays an important role in assisting the hard segments in PU to develop long-range connectivity and percolation of this phase through the soft matrix.
机译:以LiCl为分子探针,探索了模型三段低聚聚氨酯(PU)中氢键键合程度对介导硬链段相的长程连通性和渗透的影响。含22 wt%硬链段的模型使用单官能低聚聚醚,甲苯二异氰酸酯的80:20 2,4:2,6异构体混合物和水作为扩链剂的PU板。使用了由20 wt%的二甲基乙酰胺溶液浇铸的样品。不含LiCl的溶液流延薄膜样品(软段T_g-63℃)的振型原子力显微镜(AFM)相图显示存在长的相互连接的带状硬质区域。当LiCl的浓度从0.1 wt%增加到1.5 wt%时,AFM还观察到了硬质区域的系统性破坏。然而,即使在研究中使用的最高LiCl浓度下,也能够保持微相分离的形态。FT-IR数据证实LiCl通过破坏尿素硬链段的氢键结合能力与模型PU样品的硬结构域相互作用热力学分析证实,随着LiCl含量的增加,样品发生了系统的软化。因此,本研究表明氢键在协助PU中的硬链段通过该相形成长程连通性和渗滤方面起着重要作用。软矩阵。

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