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Quantifying the Aggregation Factor in Carbon Nanotube Dispersions by Absorption Spectroscopy

机译:吸收光谱法定量碳纳米管分散体中的聚集因子

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Absorption spectroscopy in the ultraviolet-visible-near infrared (UV-Vis-NIR) wavelength region has been used to quantify the aggregation factor of single-walled carbon nanotubes (SWCNTs) in liquid media through a series of controlled experiments. SWCNT bundles are dispersed in selected solvents using a calibrated ultrasonicator, which helps in determining the true amount of energy used in the exfoliation process. We also establish the selectivity of the centrifugation process, under the conditions used, in removing the nanotube aggregates as a function of the sonication time and the dispersion solvent. This study, along with the calibration of the sonication process, is shown to be very important for measuring the true aggregation factor of SWCNTs through a modified approach. We also show that the systematic characterization of SWCNT dispersions by optical spectroscopy significantly contributes to the success of dielectrophoresis (DEP) of nanotubes at predefined on-chip positions. The presence of individually dispersed SWCNTs in the dispersions is substantiated by dielectrophoretic assembly and post-DEP electromechanical measurements.
机译:通过一系列受控实验,紫外可见近红外(UV-Vis-NIR)波长区域中的吸收光谱已用于量化液体介质中单壁碳纳米管(SWCNT)的聚集因子。使用校准的超声波仪将SWCNT束分散在选定的溶剂中,这有助于确定剥落过程中使用的真实能量。我们还确定了在使用条件下,作为超声处理时间和分散溶剂的函数,在去除纳米管聚集体时离心过程的选择性。这项研究以及超声处理的校准,对于通过改进方法测量SWCNT的真实聚集因子非常重要。我们还表明,通过光谱学对SWCNT分散体的系统表征显着有助于纳米管在预定的芯片上位置的介电电泳(DEP)成功。分散体中单独分散的SWCNT的存在可以通过介电电泳和DEP后的机电测量来证实。

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