Effect of X-ray exposure on nano-mechanical properties of multi-walled carbon nanotube incorporated silicone polymer nanocomposites: An AFM-based study

M. Vadivel, S. Jayakumar, B. B. Lahiri, J. Philip
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引用次数: 2

Abstract

Nano-mechanical properties of silicone polymer-based nanocomposites loaded with multi-walled carbon nanotube (MWCNT) as nanofillers are probed here using the atomic force microscopy (AFM) technique. Further, the effects of MWCNT concentration and X-ray exposure on the nano-mechanical and topographic properties of the polymer nanocomposites are systematically studied. The root mean square surface roughness is found to increase by ∼123% when the neat polymer matrix is loaded with 2.5 wt.% of MWCNT, whereas, for a fixed MWCNT concentration, the surface roughness is found to increase by ∼171% after X-ray irradiation. This is attributed to the X-ray induced polymer degradation, polymer pull-out and poor filler-matrix interaction leading to the aggregation of MWCNT. Adhesion force and adhesion energy are estimated from the AFM-based force-displacement curves. Both quantities are found to increase with MWCNT concentration. After an exposure to diagnostic X-rays (30–70 keV), the adhesion force is found to increase by ∼4 times, which is attributed to the increased tip-surface contact area due to the higher surface roughness of the X-ray exposed samples. Further, the variation of adhesion energy with filler concentration is found to be in agreement with the theoretical values obtained from the Johnson, Kendall and Roberts (JKR) model. The elastic modulus is found to increase with the filler concentration due to an increase in adhesion force. The obtained results are beneficial for the optimal design of nanofiller loaded polymer nanocomposites for various applications, including the fabrication of lead-free radio-opaque nanocomposites.
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x射线曝光对多壁碳纳米管有机硅聚合物纳米复合材料纳米力学性能的影响:基于原子力显微镜的研究
采用原子力显微镜(AFM)技术研究了以多壁碳纳米管(MWCNT)为纳米填料的有机硅聚合物基纳米复合材料的纳米力学性能。此外,系统地研究了MWCNT浓度和x射线曝光对聚合物纳米复合材料纳米力学性能和形貌性能的影响。当整齐的聚合物基体加载2.5 wt.%的MWCNT时,发现表面均方根粗糙度增加了~ 123%,而对于固定的MWCNT浓度,发现x射线照射后表面粗糙度增加了~ 171%。这是由于x射线引起的聚合物降解,聚合物拔出和填料-基质相互作用差导致MWCNT聚集。根据力-位移曲线估计黏附力和黏附能。这两个量都随着MWCNT浓度的增加而增加。在暴露于诊断x射线(30-70 keV)后,发现附着力增加了约4倍,这是由于暴露的x射线样品的更高表面粗糙度导致尖端表面接触面积增加。此外,黏附能随填料浓度的变化与Johnson, Kendall和Roberts (JKR)模型的理论值一致。弹性模量随着填料浓度的增加而增加,这是由于附着力的增加。所得结果有助于纳米填料负载聚合物纳米复合材料的优化设计,包括无铅放射性不透明纳米复合材料的制造。
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