Sandoval Stefania, Tobias Gerard
Institut de Ciència de Materials de Barcelona (ICMAB-CSIC), Campus UAB, Barcelona, Spain.
Front Bioeng Biotechnol. 2021 Mar 10;9:644793. doi: 10.3389/fbioe.2021.644793. eCollection 2021.
We have employed fullerenes as versatile agents to "cork" the open tips of multiwalled carbon nanotubes (MWCNTs), and as promoting species for the release of the inorganic material filled within the nanotubes' cavities. High Z element compounds, namely, PbI, ZnI, and CeI, were chosen to easily determine the presence of the filler inside the hosting nanotubes by transmission electron microscopy (TEM). Fullerenes can isolate inorganic nanostructures confined within the hollow cavities of MWCNTs, which allows the removal of the external material remnant after the filling. Otherwise, taking advantage of the affinity of fullerenes with selected solvents, we have confirmed the ability of the C molecules to promote the displacement of the inorganic guest from the host. We propose two different strategies to trigger the release, employing vapor and liquid phase treatments. The first protocol involves annealing filled MWCNTs in presence of fullerenes (to obtain CPbI@MWCNTs) and the subsequent washing of the sample in ethanol under mild conditions. On the other hand, the simultaneous introduction of the C molecules and the liberation of the guest are produced by a single step wet procedure; the latter being potentially useful when materials that are not stable at high temperatures are employed for filling.
我们已将富勒烯用作通用试剂,以“封堵”多壁碳纳米管(MWCNT)的开放末端,并作为促进纳米管腔内填充的无机材料释放的物质。选择高Z元素化合物,即PbI、ZnI和CeI,以便通过透射电子显微镜(TEM)轻松确定主体纳米管内填料的存在。富勒烯可以隔离限制在MWCNT中空腔内的无机纳米结构,这使得在填充后能够去除外部残留物质。否则,利用富勒烯与选定溶剂的亲和力,我们证实了C分子促进无机客体从主体中置换的能力。我们提出了两种不同的触发释放策略,采用气相和液相处理。第一种方案包括在富勒烯存在下对填充的MWCNT进行退火(以获得CPbI@MWCNT),随后在温和条件下用乙醇洗涤样品。另一方面,C分子的同时引入和客体的释放是通过一步湿法程序产生的;当使用在高温下不稳定的材料进行填充时,后者可能会很有用。