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Macromolecular structure and vibrational dynamics of confined poly (ethylene oxide): From subnanometer 2D-intercalation into graphite oxide to surface adsorption onto graphene sheets

机译:受限聚环氧乙烷的大分子结构和振动动力学:从亚纳米二维二维插入氧化石墨到石墨烯片的表面吸附

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摘要

In this work, high-resolution inelastic neutron scattering (INS) has been used to provide novel insights into the properties of confined poly(ethylene oxide) (PEO) chains. Two limits have been explored in detail, namely, single-layer 2D-polymer intercalation into graphite oxide (GO) and surface polymer adsorption onto thermally reduced and exfoliated graphite oxide, that is, graphene (G) sheets. Careful control over the degree of GO oxidation and exfoliation reveals three distinct cases of spatial confinement: (i) subnanometer 2D-confinement; (ii) frustrated absorption; and (iii) surface immobilization. Case (i) results in drastic changes to PEO conformational (800–1000 cm–1) and collective (200–600 cm–1) vibrational modes as a consequence of a preferentially planar zigzag (trans–trans–trans) chain conformation in the confined polymer phase. These changes give rise to peculiar thermodynamic behavior, whereby confined PEO chains are unable to either crystallize or display a calorimetric glass transition. In case (ii), GO is thermally reduced resulting in a disordered pseudo-graphitic structure. As a result, we observe minimal PEO absorption owing to a dramatic reduction in the abundance of hydrophilic groups inside the distorted graphitic galleries. In case (iii), the INS data unequivocally show that PEO chains adsorb firmly onto the G sheets, with a substantial increase in the population of gauche conformers. Well-defined glass and melting transitions associated with the confined polymer phase are recovered in case (iii), albeit at significantly lower temperatures than those of the bulk.
机译:在这项工作中,高分辨率非弹性中子散射(INS)已用于提供有关受限聚环氧乙烷(PEO)链的性质的新颖见解。已经详细探讨了两个限制,即单层2D聚合物嵌入到氧化石墨(GO)中和表面聚合物吸附在热还原和剥落的氧化石墨(即石墨烯(G))板上。对GO氧化和剥落程度的仔细控制揭示了三种不同的空间限制情况:(i)纳米级2D约束; (ii)沮丧的吸收; (iii)表面固定。情况(i)导致PEO构象(800–1000 cm–1)和集体(200–600 cm–1)振动模式发生剧烈变化,这是由于在其中优先存在平面之字形(trans-trans-trans)链构型的结果受限的聚合物相。这些变化引起特殊的热力学行为,因此,受限制的PEO链不能结晶或显示量热玻璃化转变。在情况(ii)中,GO被热还原,导致无序的伪石墨结构。结果,我们观察到最小的PEO吸收,这是由于扭曲的石墨画廊内亲水基团的丰度大大降低。在情况(iii)中,INS数据明确表明PEO链牢固地吸附在G薄层上,而薄纱构象异构体的数量大大增加。在情况(iii)中,与受限的聚合物相相关的界限分明的玻璃和熔融转变得以恢复,尽管其温度明显低于本体温度。

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