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Robust Nacrelike Graphene Oxide-Calcium Carbonate Hybrid Mesh with Underwater Superoleophobic Property for Highly Efficient Oil/Water Separation

机译:鲁棒Nacrelike石墨烯氧化物 - 碳酸钙杂交物质,水下超级性能用于高效的油/水分离

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摘要

Inspired by the mastoid structure of the lotus leaf and the robust layered structure of the nacre, a novel nacrelike graphene oxide-calcium carbonate (GO-CaCO3) hybrid mesh with superhydrophilic and underwater superoleophobic property was prepared for the first time, via a facile, economical, and environmentally friendly layer-by-layer (LBL) self-assembly method using commercially available stainless steel mesh (SSM) as a ready-made mask. Interestingly, GO nanosheets played a threefold role, regulating the growth of CaCO3 nanocrystals between the GO interlamination for constructing a "brick-and-mortar" structure, improving the interface stability via coordination assembly onto SSM, and creating strong hydration derived from rich oxygen-containing functional groups. The surface hydrophilicity and hierarchically micro/nanoscale structure of GO-CaCO3 artificial pearls imbed on the SSM, contributing to outstanding superhydrophilicity and underwater superoleophobicity. The biomimetic hybrid mesh exhibited a strong mechanical property with a Young's modulus of 25.4 +/- 2.6 GPa. The optimized hybrid mesh showed a high separation efficiency of more than 99% toward a series of oil/water mixtures with high flux. The low oil-adhesion force, high fatigue-resistance, chemical stability (acid/alkali/salt resistance), and excellent recycling performance enlighten the great prospects of GO-based nacrelike material for application in oily wastewater treatment.
机译:灵感来自莲花叶的乳突结构和露珠的鲁棒层状结构,首次制备具有超无水和水下超级性质的新型Nacrelike石墨烯氧化物 - 碳酸钙(Go-CaCO 3)杂交物质,通过容易,使用市售的不锈钢网(SSM)作为现成面膜的经济性和环保的层次层(LBL)自组装方法。有趣的是,Go anosheets发挥了三倍的作用,调节了用于构建“砂砾”结构的Go Instramination之间的CaCO3纳米晶体的生长,通过协调组件改善界面稳定性,并产生富含富氧的强水合含有官能团。在SSM上嵌入的Go-Caco3人造珍珠的表面亲水性和分层微/纳米尺度结构,有助于出色的超细性和水下超级化学性。仿生杂交网具有较小的力学性能,杨氏模量为25.4 +/- 2.6 GPA。优化的混合网显示的高分离效率超过99%,朝一系列具有高通量的油/水混合物。低油粘连力,高疲劳性,化学稳定性(酸/碱/耐盐),以及出色的回收性能,开明了基于伐木的Nacrelike材料的伟大前景,用于在油性废水处理中应用。

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