Fresco-Cala Beatriz, López-Lorente Ángela I, Cárdenas Soledad
Departamento de Química Analítica, Instituto Universitario de Investigación en Química Fina y Nanoquímica IUNAN, Universidad de Córdoba, Campus de Rabanales, Edificio Marie Curie, E-14071 Córdoba, Spain.
Nanomaterials (Basel). 2018 May 25;8(6):370. doi: 10.3390/nano8060370.
A monolithic solid based solely on single walled carbon nanohorns (SWNHs) was prepared without the need of radical initiators or gelators. The procedure involves the preparation of a wet jelly-like system of pristine SWNHs followed by slow drying (48 h) at 25 °C. As a result, a robust and stable porous network was formed due to the interaction between SWNHs not only via π-π and van der Waals interactions, but also via the formation of carbon bonds similar to those observed within dahlia aggregates. Pristine SWNHs and the SWNH monolith were characterized by several techniques, including scanning electron microscopy (SEM), transmission electron microscopy (TEM), confocal laser scanning microscopy, Raman spectroscopy, X-ray photoelectron spectroscopy (XPS), and nitrogen intrusion porosimetry. Taking into account the efficiency of carbon nanoparticles in sorption processes, the potential applicability of the SWNH-monolith in this research field was explored using toluene; m-, p-, and o-xylene; ethylbenzene; and styrene, as target analytes. Detection limits were 0.01 µg·L in all cases and the inter-day precision was in the interval 7.4⁻15.7%. The sorbent performance of the nanostructured monolithic solid was evaluated by extracting the selected compounds from different water samples with recovery values between 81.5% and 116.4%.
制备了一种仅基于单壁碳纳米角(SWNHs)的整体式固体,无需自由基引发剂或胶凝剂。该过程包括制备原始SWNHs的湿凝胶状体系,然后在25℃下缓慢干燥(48小时)。结果,由于SWNHs之间不仅通过π-π和范德华相互作用,而且还通过形成类似于在大丽花聚集体中观察到的碳键的相互作用,形成了坚固且稳定的多孔网络。通过几种技术对原始SWNHs和SWNH整体进行了表征,包括扫描电子显微镜(SEM)、透射电子显微镜(TEM)、共聚焦激光扫描显微镜、拉曼光谱、X射线光电子能谱(XPS)和压汞法。考虑到碳纳米颗粒在吸附过程中的效率,使用甲苯;间、对、邻二甲苯;乙苯;以及苯乙烯作为目标分析物来探索SWNH整体在该研究领域的潜在适用性。所有情况下检测限均为0.01µg·L⁻¹,日间精密度范围为7.4⁻15.7% 。通过从不同水样中萃取选定化合物来评估纳米结构整体式固体的吸附剂性能,并得到回收率在81.5%至116.4%之间的值。