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Cross-flow-assembled ultrathin and robust graphene oxide membranes for efficient molecule separation

机译:交叉流量组装的超薄和鲁棒的石墨烯氧化物膜,用于有效分子分离

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A graphene oxide (GO) membrane is promising for molecule separation. However, it is still a big challenge to achieve highly stable pristine GO membranes, especially in water. In this work, an ultrathin and robust GO membrane is assembled via the cross-flow method. The as-prepared 12 nm thick GO membrane (GO CF membrane) presents high stability with water permeance of 1505 +/- 65 litres per hour per square meter per bar (LHM bar(-1)) and Evans Blue (EB) rejection of 98.7 +/- 0.4%, 21-fold enhancement in water permeance compared with that of a pristine GO membrane (50-70 LHM bar(-1)) and 100 times higher than that of commercial ultrafiltration membranes (15 LHM.bar(-1), GE2540F30, MWCO 1000, GE Co., Ltd) with similar rejection. Attributed to the surface cross-flow, the GO nanosheets will be refolded, crumpled, or wrinkled, resulting in a very strong inter-locking structure among the GO membrane, which significantly enhances the stability and facilitates their separation performance. This cross-flow assembling technique is also easily extended to assemble GO membranes onto other various backing filter supports. Based on the Donnan effect and size sieving mechanism, selective membrane separation of dyes with a similar molecular structure from their mixture (such as Rhodamine B (RhB) and Rose Bengal, and RhB and EB) are achieved with a selectivity of 133 +/- 10 and 227 +/- 15, respectively. Assembly of this ultrathin GO membrane with high stability and separation performance, via a simple cross-flow method, shows great potential for water purification.
机译:石墨烯氧化物(GO)膜被希望用于分子分离。然而,它仍然是一个很大的挑战,实现高度稳定纯净的GO膜,尤其是在水中。在这项工作中,超薄和健壮GO膜经由横流的方法组装。所制备的12纳米厚的膜GO(GO CF膜)呈现高稳定性与每小时每栏1505 +/-65升每平方米水渗透率(LHM巴(-1))和伊文思蓝(EB)的排斥反应98.7 +/- 0.4%,水渗透率21倍的增强与一个原始GO膜(50-70巴LHM(-1))和100倍比市售超滤膜(15 LHM.bar的较高(比较 - 1),GE2540F30,MWCO 1000,GE有限公司)具有类似抑制。归因于表面横流,该纳米片GO将重折叠,折皱或起皱,导致GO膜,其显著提高了稳定性和促进它们的分离性能之间的非常强的相互锁定结构。此横流组装技术也很容易扩展到装配GO膜到其它各种背衬过滤载体。基于所述唐南效应和大小筛分机构,染料与从它们的混合物中的分子结构相似的选择性膜分离(如若丹明B(罗丹明B)和玫瑰红,罗丹明B和和EB)与133选择性可达+/- 10和227 +/- 15,分别。装配此超薄GO膜具有高稳定性和分离性能,通过一个简单的横流的方法,示出了用于水净化的巨大潜力。

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