Gong Zhiyong, Pan Yong-Le, Videen Gorden, Wang Chuji
1 Department of Physics and Astronomy, Mississippi State University, Starkville, MS, USA.
2 U.S. Army Research Laboratory, Adelphi, MD, USA.
Appl Spectrosc. 2019 Aug;73(8):910-916. doi: 10.1177/0003702819828809. Epub 2019 Apr 16.
Carbon nanotubes (CNTs) have become recognized as a potential environmental and health hazard as their applications are broadening and manufacturing costs are reducing. Fundamental information of CNTs in air is of significant importance to our understanding of their environmental fate as well as to further applications. Extensive efforts have been made over decades on characterizing CNTs; however, a majority of the studies are of bulk or CNTs dispersed on substrates. In the present study, we characterize single CNT particles in air using optical trapping Raman spectroscopy (OT-RS). Different types of CNT particles, as well as glassy carbon spheres, were optically trapped in air. Their physical properties were viewed by microscopic bright field images and scattering images; their chemical properties and structural information can be inferred from characteristic Raman bands. The system can also spatially resolve the morphology and chemical distribution of optically trapped CNT particles in air. The OT-RS technique combines single-particle morphological and chemical information and offers an online method to characterize the physicochemical properties of single CNT particles at their native states in air.
随着碳纳米管(CNTs)的应用不断拓展且制造成本不断降低,它们已被公认为一种潜在的环境和健康危害。碳纳米管在空气中的基础信息对于我们理解其环境归宿以及进一步应用至关重要。数十年来,人们在表征碳纳米管方面付出了巨大努力;然而,大多数研究针对的是块状碳纳米管或分散在基底上的碳纳米管。在本研究中,我们使用光镊拉曼光谱(OT-RS)对空气中的单个碳纳米管颗粒进行表征。不同类型的碳纳米管颗粒以及玻璃碳球在空气中被光镊捕获。通过显微镜明场图像和散射图像观察它们的物理性质;其化学性质和结构信息可从特征拉曼谱带推断得出。该系统还能够在空间上解析空气中被光镊捕获的碳纳米管颗粒的形态和化学分布。光镊拉曼光谱技术结合了单颗粒的形态和化学信息,提供了一种在线方法来表征空气中处于原始状态的单个碳纳米管颗粒的物理化学性质。