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Nanoporous Atomically Thin Graphene Membranes for Desalting and Dialysis Applications

机译:用于脱盐和透析应用的纳米多孔原子薄石墨烯膜

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Dialysis is a ubiquitous separation process in biochemical processing and biological research. State-of-the-art dialysis membranes comprise a relatively thick polymer layer with tortuous pores, and suffer from low rates of diffusion leading to extremely long process times (often several days) and poor selectivity, especially in the 0-1000 Da molecular weight cut-off range. Here, the fabrication of large-area (cm(2)) nanoporous atomically thin membranes (NATMs) is reported, by transferring graphene synthesized using scalable chemical vapor deposition (CVD) to polycarbonate track-etched supports. After sealing defects introduced during transfer/handling by interfacial polymerization, a facile oxygen-plasma etch is used to create size-selective pores (<= 1 nm) in the CVD graphene. Size-selective separation and desalting of small model molecules (approximate to 200-1355 Da) and proteins (approximate to 4 000 Da) are demonstrated, with approximate to 1-2 orders of magnitude increase in permeance compared to state-of-the-art commercial membranes. Rapid diffusion and size-selectivity in NATMs offers transformative opportunities in purification of drugs, removal of residual reactants, biochemical analytics, medical diagnostics, therapeutics, and nano-bio separations.
机译:透析是生化处理和生物学研究中普遍存在的分离过程。现有技术的透析膜包括具有弯曲孔的相对较厚的聚合物层,并且扩散速率低,导致极长的处理时间(通常为数天)和较差的选择性,尤其是在0-1000 Da分子量下截止范围。在这里,通过将使用可缩放化学气相沉积(CVD)合成的石墨烯转移到聚碳酸酯轨迹蚀刻的支撑体上,报道了大面积(cm(2))纳米多孔原子薄膜(NATMs)的制造。在通过界面聚合密封在转移/处理过程中引入的缺陷之后,使用简便的氧等离子刻蚀在CVD石墨烯中创建尺寸选择孔(<= 1 nm)。证实了小分子模型分子(大约200-1355 Da)和蛋白质(大约4000 Da)的大小选择性分离和脱盐,与目前的状态相比,渗透率增加了大约1-2个数量级。艺术商业膜。 NATM中的快速扩散和尺寸选择性为药物纯化,残留反应物的去除,生化分析,医学诊断,治疗和纳米生物分离提供了变革性的机会。

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