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Interlayer Void Space as the Key Semipermeable Site for Sieving Molecules and Leaking Ions in Graphene Oxide Filter

机译:层间空间作为筛分分子的关键半渗透部位,并在石墨烯氧化石墨烯滤网中泄漏离子

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Within the nanopores, junctions and interlayer void space (IVS) in graphene oxide film (GOf), we report that IVS function as the key semipermeable site during sieving. The GOf could filter only dye molecules having nanometer-ranged dimensions. Tinier hydrated ions with angstrom-ranged dimensions couldn't be sieved by GOf. Nature and extent of this molecular sieving property have been justified by observing sieving efficacy and flow times for aqueous solutions of dyes, inorganic salts and their mixtures. GOf also could separate the dyes from mixtures with salts. The flow time followed the trend as: mixtures > salt solutions > dye solutions. PXRD data reveal entering of dye molecules at IVS during sieving. Obviously, a part of dye molecules leaking through the nanopores and junctions of GOf, finally become trapped at the IVS. IVS, therefore has been recognized as the key semipermeable site for molecular sieving in GO. With exploring the insight features of molecular sieving in GOf, this report clearly indicates that IVS needs to be tuned to adopt GOf for various analytical aspects including water purification, desalination and organic inorganic separation.
机译:在纳米孔中,氧化石墨烯膜(GOF)中的连接器和层间空间(IVS),我们报告IVS在筛分过程中充当关键的半透明位点。 GOF只能滤除具有纳米范围尺寸的染料分子。 GOF无法筛分带有Angstrom范围尺寸的微小水合离子。通过观察染料和流动时间的染料,无机盐及其混合物的筛分溶液及其混合物,这种分子筛分特性的性质和程度已得到证明是合理的。 GOF还可以将染料与盐混合物分开。流动时间遵循以下趋势:混合>盐溶液>染料溶液。 PXRD数据揭示了在筛分期间进入IVS处的染料分子。显然,通过纳米孔和GOF的连接处泄漏的一部分染料分子最终被困在IVS上。因此,IVS被认为是GO中分子筛分的关键半透明位点。通过探索GOF中分子筛分的洞察力,该报告清楚地表明,需要调整IVS以采用GOF,以用于包括水纯化,淡化和有机无机分离的各种分析方面。

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