Suppr超能文献

功能梯度大孔聚合物:乳液模板法可控制密度、孔形态和组成。

Functionally Gradient Macroporous Polymers: Emulsion Templating Offers Control over Density, Pore Morphology, and Composition.

作者信息

Xu Yufeng, Tang Le, Nok-Iangthong Chanokporn, Wagner Markus, Baumann Georg, Feist Florian, Bismarck Alexander, Jiang Qixiang

机构信息

Institute of Material Chemistry and Research, Faculty of Chemistry, University of Vienna, Währinger Strasse 42, 1090 Vienna, Austria.

Institute for Vehicle Safety, Graz University of Technology, Inffeldgasse 13 VI, 8010 Graz, Austria.

出版信息

ACS Appl Polym Mater. 2024 Apr 24;6(9):5150-5162. doi: 10.1021/acsapm.4c00261. eCollection 2024 May 10.

Abstract

Gradient macroporous polymers were produced by polymerization of emulsion templates comprising a continuous monomer phase and an internal aqueous template phase. To produce macroporous polymers with gradient composition, pore size, and foam density, we varied the template formulation, droplet size, and internal phase ratio of emulsion templates continuously and stacked those prior to polymerization. Using the outlined approach, it is possible to vary one property along the resulting macroporous polymer while retaining the other properties. The elastic moduli and crush strengths change along the gradient of the macroporous polymers; their mechanical properties are dominated by those of the weakest layers in the gradient. Macroporous polymers with gradient chemical composition and thus stiffness provide both high impact load and energy adsorption, rendering the gradient foam suitable for impact protective applications. We show that dual-dispensing and simultaneous blending of two different emulsion formulations in various ratios results in a fine, bidirectional change of the template composition, enabling the production of true gradient macroporous polymers with a high degree of design freedom.

摘要

梯度大孔聚合物是通过乳液模板聚合制备的,该乳液模板由连续的单体相和内部水相模板相组成。为了制备具有梯度组成、孔径和泡沫密度的大孔聚合物,我们连续改变乳液模板的配方、液滴尺寸和内相比,并在聚合前将它们堆叠起来。使用所述方法,可以在所得大孔聚合物中沿一个方向改变一种性质,同时保留其他性质。弹性模量和抗压强度沿大孔聚合物的梯度变化;它们的机械性能由梯度中最薄弱层的性能决定。具有梯度化学成分和刚度的大孔聚合物既提供了高冲击载荷又具有能量吸收能力,使得梯度泡沫适用于冲击防护应用。我们表明,以不同比例双组分分配和同时混合两种不同的乳液配方会导致模板组成的精细、双向变化,从而能够生产具有高度设计自由度的真正梯度大孔聚合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dbe/11091853/5a0ee074a7df/ap4c00261_0008.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验