Röhrl Maximilian, Federer Lukas K S, Timmins Renee L, Rosenfeldt Sabine, Dörres Theresa, Habel Christoph, Breu Josef
Bavarian Polymer Institute and Department of Chemistry, University of Bayreuth, Bayreuth 95447, Germany.
ACS Appl Mater Interfaces. 2021 Oct 13;13(40):48101-48109. doi: 10.1021/acsami.1c14246. Epub 2021 Sep 29.
Systematic studies on the influence of crystalline vs disordered nanocomposite structures on barrier properties and water vapor sensitivity are scarce as it is difficult to switch between the two morphologies without changing other critical parameters. By combining water-soluble poly(vinyl alcohol) (PVOH) and ultrahigh aspect ratio synthetic sodium fluorohectorite (Hec) as filler, we were able to fabricate nanocomposites from a single nematic aqueous suspension by slot die coating that, depending on the drying temperature, forms different desired morphologies. Increasing the drying temperature from 20 to 50 °C for the same formulation triggers phase segregation and disordered nanocomposites are obtained, while at room temperature, one-dimensional (1D) crystalline, intercalated hybrid Bragg Stacks form. The onset of swelling of the crystalline morphology is pushed to significantly higher relative humidity (RH). This disorder-order transition renders PVOH/Hec a promising barrier material at RH of up to 65%, which is relevant for food packaging. The oxygen permeability (OP) of the 1D crystalline PVOH/Hec is an order of magnitude lower compared to the OP of the disordered nanocomposite at this elevated RH (OP = 0.007 cm μm m day bar cf. OP = 0.047 cm μm m day bar at 23 °C and 65% RH).
关于结晶态与无序态纳米复合结构对阻隔性能和水蒸气敏感性影响的系统研究很少,因为在不改变其他关键参数的情况下很难在这两种形态之间转换。通过将水溶性聚乙烯醇(PVOH)与超高长径比的合成氟代锂蒙脱石钠(Hec)作为填料相结合,我们能够通过狭缝模头涂布从单一向列型水悬浮液制备纳米复合材料,根据干燥温度的不同,其会形成不同的理想形态。对于相同配方,将干燥温度从20℃提高到50℃会引发相分离,从而得到无序纳米复合材料,而在室温下,则会形成一维(1D)结晶的插层混合布拉格堆叠结构。结晶形态开始膨胀的相对湿度被显著提高。这种无序 - 有序转变使PVOH/Hec在高达65%的相对湿度下成为一种有前景的阻隔材料,这与食品包装相关。在这种较高相对湿度下(23℃和65%相对湿度时,1D结晶PVOH/Hec的氧气透过率(OP) = 0.007 cm·μm/(m²·day·bar),无序纳米复合材料的OP = 0.047 cm·μm/(m²·day·bar)),1D结晶PVOH/Hec的氧气透过率比无序纳米复合材料低一个数量级。