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Rapid and efficient removal of ionic impurities from graphene oxide through hollow fiber diafiltration

机译:通过中空纤维渗滤从石墨烯氧化物中快速有效地除去离子杂质

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Graphene has tremendous importance due to its potential applications in electronics, catalysis, sensors, etc. On the other hand, graphene oxide (GO) or reduced graphene oxide (rGO) have increasing applications in various fields such as water treatment, catalysis, etc. Major bottleneck of large scale production is purification of GO and it is traditionally conducted in time consuming dialysis in small batches. The present work demonstrates utility and applicability of continuous hollow fiber diafiltration for the removal of ionic impurities from GO solution. 12 kDa cut off hollow fibers demonstrated the best results. Seven stages with 250 ml constant volume of diafiltration and five hours of filtration at 103 kPa transmembrane pressure drop and 10 L/h cross flow rate were found to be suitable conditions of purification. Produced GO had quality comparable to the commercial ones. Thus, continuous diafiltration was found to be an efficient and highly scalable GO purification technique.
机译:由于其在电子,催化,传感器等中的潜在应用,石墨烯具有巨大的重要性,另一方面,石墨烯氧化物(GO)或石墨烯氧化物(RGO)在各种领域中的应用增加,催化剂,催化等。 大规模生产的主要瓶颈是净化的,它传统上以少量批次消耗透析。 本作本作品证明了连续中空纤维渗滤的实用性和适用性,以从溶液中除去离子杂质。 12 KDA切断中空纤维展示了最佳效果。 七个阶段具有250ml恒定体积的渗滤体积和103kPa跨膜压降的五小时过滤,并发现10L / h交叉流量是合适的纯化条件。 生产的GO有与商业人员相当的质量。 因此,发现连续渗滤是一种有效且高度可扩展的GO净化技术。

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