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首页> 外文期刊>Science Advances >Controlling ice formation on gradient wettability surface for high-performance bioinspired materials
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Controlling ice formation on gradient wettability surface for high-performance bioinspired materials

机译:用于高性能生物悬浮材料的梯度润湿性表面上的冰形成

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Ice-templating holds promise to become a powerful technique to construct high-performance bioinspired materials. Both ice nucleation and growth during the freezing process are crucial for the final architecture of the ice-templated material. However, effective ways to control these two very important factors are still lacking. Here, we demonstrate that successive ice nucleation and preferential growth can be realized by introducing a wettability gradient on a cold finger. A bulk porous material with a long-range lamellar pattern was obtained using a linear gradient, yielding a high-performance, bulk nacre-mimetic composite with excellent strength and toughness after infiltration. In addition, cross-aligned and circular lamellar structures can be obtained by freeze-casting on surfaces modified with bilayer linear gradient and radial gradient, respectively, which are impossible to realize with conventional freeze-casting techniques. Our study highlights the potential of harnessing the rich designability of surface wettability patterns to build high-performance bulk materials with bioinspired complex architectures.
机译:冰模板拥有承诺成为构建高性能生物悬浮材料的强大技术。冷冻过程中的冰核和生长都对冰模板材料的最终架构至关重要。但是,控制这两个非常重要因素的有效方法仍然缺乏。这里,我们证明可以通过在冷手指上引入润湿性梯度来实现连续的冰成核和优先生长。使用线性梯度获得具有远程层状图案的块状多孔材料,得到高性能,渗透后具有优异的强度和韧性的散装粗糙化合物。另外,交叉对准和圆形层状结构可以通过分别用双层线性梯度和径向梯度进行改性的表面进行冷冻浇铸来获得,这是不可能以传统的冻铸技术实现的。我们的研究突出了利用表面润湿性模式的丰富可设计能力,以建立具有生物悬浮的复杂架构的高性能散装材料。

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