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Highly porous 3D PLLA materials composed of nanosheets, fibrous nanosheets, or nanofibrous networks: Preparation and the potential application in oil-water separation

机译:由纳米片,纤维纳米片或纳米纤维网络组成的高度多孔的3D PLLA材料:制备方法及其在油水分离中的潜在应用

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Gradual precipitation method was used to generate porous PLLA materials with adjustable morphology and micropores. By adjusting the solvents and concentrations of polymer solution, we could conveniently get PLLA nano-units, which further formed porous materials with tunable porosities (91.4-97.5%). It was found that nanosheets, fibrous nanosheets, and nanofibrous networks were produced from solutions with the PLLA in DMF, acetone and EtOAc, respectively. The mechanism of solid-liquid phase separation and liquid-liquid phase separation were responsible for the formation of nanosheets and nanofibrous networks respectively. The nano-/micro-dual-scale structures on the porous materials surface and the trapped air in pores significantly improved the water contact angle up to 145, compared to 74 of the solvent-cast PLLA bulk film. Due to hydrophobicity, high porosity and excellent capillary effect, the oil absorption ratio of the porous materials reached more than 2900% which was significantly higher than the absorption capacity of materials obtained by traditional thermal induced phase separation method. Furthermore, the materials have good oil fixation property and excellent stability in shape after oil absorption. In combination with the biodegradable properties, the materials were potential environmentally used as oil absorbents and as oil-water separation materials. (C) 2016 Elsevier B.V. All rights reserved.
机译:逐步沉淀法用于产生形态和微孔可调的多孔PLLA材料。通过调节溶剂和聚合物溶液的浓度,我们可以方便地获得PLLA纳米单元,从而进一步形成了具有可调孔隙率(91.4-97.5%)的多孔材料。已经发现,分别由具有PLLA的DMF,丙酮和EtOAc溶液制备纳米片,纤维纳米片和纳米纤维网络。固-液相分离和液相-液相分离的机理分别负责纳米片和纳米纤维网络的形成。与溶剂浇铸的PLLA块状薄膜的74相比,多孔材料表面上的纳米/微米双尺度结构和孔中捕获的空气显着改善了水接触角,直至145。由于疏水性,高孔隙率和优异的毛细作用,该多孔材料的吸油率达到2900%以上,明显高于传统热诱导相分离方法获得的材料的吸收能力。此外,该材料具有良好的固油性能和吸油后的形状稳定性。结合可生物降解的特性,该材料在环境上潜在地用作吸油剂和油水分离材料。 (C)2016 Elsevier B.V.保留所有权利。

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