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首页> 外文期刊>ACS applied materials & interfaces >Programmable Porous Polymers via Direct Bubble Writing with Surfactant-Free Inks
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Programmable Porous Polymers via Direct Bubble Writing with Surfactant-Free Inks

机译:可编程多孔聚合物通过直接泡沫写入表面活性剂油墨

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摘要

Fabrication of macroporous polymers with functionally graded architecture or chemistry bears transformative potential in acoustic damping, energy storage materials, flexible electronics, and filtration but is hardly reachable with current processes. Here, we introduce thiol-ene chemistries in direct bubble writing, a recent technique for additive manufacturing of foams with locally controlled cell size, density, and macroscopic shape. Surfactant-free and solvent-free graded three-dimensional (3D) foams without drying-induced shrinkage were fabricated by direct bubble writing at an unparalleled ink viscosity of 410 cP (40 times higher than previous formulations). Functionalities including shape memory, high glass transition temperatures (>25 degrees C), and chemical gradients were demonstrated. These results extend direct bubble writing from aqueous inks to nonaqueous formulations at high liquid flow rates (3 mL min(-1)). Altogether, direct bubble writing with thiol-ene inks promises rapid one-step fabrication of functional materials with locally controlled gradients in the chemical, mechanical, and architectural domains.
机译:具有功能梯度架构或化学的大孔聚合物的制造具有声学阻尼,储能材料,柔性电子和过滤的变换潜力,但与电流过程几乎无法到达。在这里,我们介绍了直接泡沫写入的硫醇 - 烯化学品,最近的一种用于局部控制的电池尺寸,密度和宏观形状的泡沫的添加剂制造技术。通过直接泡沫写入410cp的无与伦比的油墨粘度(比以前的制剂高40倍),通过直接泡沫写入制备无干燥诱导的收缩的无溶剂和无溶剂的渐变三维(3D)泡沫。表现出包括形状记忆,高玻璃化转变温度(> 25摄氏度)和化学梯度的功能。这些结果在高液体流速(3mL min(-1))下从含水油墨中直接泡沫写入非水性制剂。完全,带有硫醇-NEE油墨的直接泡泡写作有助于在化学,机械和建筑结构域中具有局部控制梯度的功能材料的快速一步制造。

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