Moon Myeong Hee, Kang Dukjin, Jung Jaehong, Kim Jongmin
Department of Chemistry, Yonsei University, Seoul 120-749, Korea
J Sep Sci. 2004 Jun;27(9):710-7. doi: 10.1002/jssc.200401743.
Flow field-flow fractionation (flow FFF), a separation technique for particles and macromolecules, has been used to separate carbon nanotubes (CNT). The carbon nanotube ropes that were purified from a raw carbon nanotube mixture by acidic reflux followed by cross-flow filtration using a hollow fiber module were cut into shorter lengths by sonication under a concentrated acid mixture. The cut carbon nanotubes were separated by using a modified flow FFF channel system, frit inlet asymmetrical flow FFF (FI AFIFFF) channel, which was useful in the continuous flow operation during injection and separation. Carbon nanotubes, before and after the cutting process, were clearly distinguished by their retention profiles. The narrow volume fractions of CNT collected during flow FFF runs were confirmed by field emission scanning electron microscopy and Raman spectroscopy. Experimentally, it was found that retention of carbon nanotubes in flow FFF was dependent on the use of surfactant for CNT dispersion and for the carrier solution in flow FFF. In this work, the use of flow FFF for the size differentiation of carbon nanotubes in the process of preparation or purification was demonstrated.
流场-流分馏(flow FFF)是一种用于分离颗粒和大分子的技术,已被用于分离碳纳米管(CNT)。通过酸性回流从原始碳纳米管混合物中纯化得到的碳纳米管绳,然后使用中空纤维模块进行错流过滤,通过在浓酸混合物中超声处理将其切成较短的长度。切割后的碳纳米管通过使用改进的流场-流分馏通道系统——烧结入口不对称流场-流分馏(FI AFIFFF)通道进行分离,该通道在进样和分离过程中的连续流动操作中很有用。通过保留曲线可以清楚地区分切割前后的碳纳米管。通过场发射扫描电子显微镜和拉曼光谱证实了流场-流分馏运行期间收集的碳纳米管的窄体积分数。实验发现,碳纳米管在流场-流分馏中的保留取决于用于碳纳米管分散和流场-流分馏中载体溶液的表面活性剂的使用。在这项工作中,展示了流场-流分馏在碳纳米管制备或纯化过程中用于尺寸区分的应用。