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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Aggregation behaviors of PEO-PPO-ph-PPO-PEO and PPO-PEO-ph-PEO-PPO at an air/water interface: Experimental study and molecular dynamics simulation
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Aggregation behaviors of PEO-PPO-ph-PPO-PEO and PPO-PEO-ph-PEO-PPO at an air/water interface: Experimental study and molecular dynamics simulation

机译:PEO-PPO-ph-PPO-PEO和PPO-PEO-ph-PEO-PPO在空气/水界面的聚集行为:实验研究和分子动力学模拟

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摘要

The block polyethers PEO-PPO-ph-PPO-PEO (BPE) and PPO-PEO-ph-PEO-PPO (BEP) are synthesized by anionic polymerization using bisphenol A as initiator. Compared with Pluronic P123, the aggregation behaviors of BPE and BEP at an air/water interface are investigated by the surface tension and dilational viscoelasticity. The molecular construction can influence the efficiency and effectiveness of block polyethers in decreasing surface tension. BPE has the most efficient ability to decrease surface tension of water among the three block polyethers. The maximum surface excess concentration (Λ _(max)) of BPE is larger than that of BEP or P123. Moreover, the dilational modulus of BPE is almost the same as that of P123, but much larger than that of BEP. The molecular dynamics simulation provides the conformational variations of block polyethers at the air/water interface.
机译:嵌段聚醚PEO-PPO-ph-PPO-PEO(BPE)和PPO-PEO-ph-PEO-PPO(BEP)通过使用双酚A作为引发剂的阴离子聚合反应合成。与Pluronic P123相比,通过表面张力和膨胀粘弹性研究了BPE和BEP在空气/水界面的聚集行为。分子结构可影响嵌段聚醚在降低表面张力方面的效率和效果。 BPE具有降低三种嵌段聚醚中水的表面张力的最有效能力。 BPE的最大表面过量浓度(Λ_(max))大于BEP或P123的最大表面过量浓度。此外,BPE的膨胀模量与P123的膨胀模量几乎相同,但比BEP的膨胀模量大得多。分子动力学模拟提供了空气/水界面处嵌段聚醚的构象变化。

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