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Quantification of Carbon Nanotubes by Raman Analysis

机译:通过拉曼分析对碳纳米管进行定量

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The increasing prevalence of carbon nanotubes (CNTs) in manufacturing and research environments, together with the potential exposure risks, necessitates development of reliable and accurate monitoring methods for these materials. We examined quantification of CNTs by two distinct methods based on Raman spectroscopy. First, as measured by the Raman peak intensity of aqueous CNT suspensions, and second, by Raman mapping of air filter surfaces onto which CNTs were collected as aerosols or applied as small-area (0.05 cm(2)) deposits. Correlation (R-2 = 0.97) between CNT concentration and Raman scattering intensity for suspensions in cuvettes was found over a concentration range from about 2 to 10 mu g/ml, but measurement variance precludes practical determination of a calibration curve. Raman mapping of aerosol sample filter surfaces shows correlation with CNT mass when the surface density is relatively high (R-2 = 0.83 and 0.95 above about 5 pg total mass on filter), while heterogeneity of CNT deposition makes obtaining representative maps of lower density samples difficult. This difficulty can be mitigated by increasing the area mapped relative to the total sample area, improving both precision and the limit of detection (LOD). For small-area deposits, detection of low masses relevant to occupational monitoring can be achieved, with an estimated LOD of about 50 ng.
机译:制造和研究环境中碳纳米管(CNT)的患病率的增加,以及潜在的暴露风险,需要开发这些材料的可靠和准确的监测方法。我们通过基于拉曼光谱法的两种不同方法检查了CNT的定量。首先,通过水性CNT悬浮液的拉曼峰强度测量,其次是通过拉曼映射空气滤清器表面,将CNT收集为气溶胶或用作小区域(0.05 cm(2))沉积物。在浓度范围从约2至10 mu g/ml的浓度范围内发现了CNT浓度与拉曼散射强度之间的相关性(R-2 = 0.97),但是测量方差排除了校准曲线的实际确定。当表面密度相对较高时,气溶胶样品滤波器表面的拉曼映射显示与CNT质量的相关性(R-2 = 0.83和0.95高于5 pg的滤波器上的总质量约为5 pg),而CNT沉积的异质性使得获得较低密度样品的代表性图难的。可以通过增加相对于总样品面积映射的面积来缓解这种困难,从而提高了检测的精度和限制(LOD)。对于小面积沉积物,可以实现与职业监测相关的低质量检测,估计约为50 ng。

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