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Mechanical properties of cellulose nanomaterials studied by contact resonance atomic force microscopy

机译:接触共振原子力显微镜研究纤维素纳米材料的力学性能

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Quantification of the mechanical properties of cellulose nanomaterials is key to the development of new cellulose nanomaterial based products. Using contact resonance atomic force microscopy we measured and mapped the transverse elastic modulus of three types of cellulosic nanoparticles: tunicate cellulose nanocrystals, wood cellulose nanocrystals, and wood cellulose nanofibrils. These modulus values were calculated with different contact mechanics models exploring the effects of cellulose geometry and thickness on the interpretation of the data. While intra-particle variations in modulus are detected, we did not observe a measureable difference in modulus between the three types of cellulose particles. Improved practices and experimental complications for the characterization of cellulosic nanomaterials with atomic force microscopy are discussed.
机译:纤维素纳米材料的机械性能的量化是基于纤维素纳米材料的新产品开发的关键。使用接触共振原子力显微镜,我们测量并绘制了三种纤维素纳米颗粒的横向弹性模量:被膜纤维素纳米晶体,木质纤维素纳米晶体和木质纤维素纳米原纤维。这些模量值是通过不同的接触力学模型计算得出的,这些模型探讨了纤维素几何形状和厚度对数据解释的影响。虽然检测到颗粒内模量变化,但我们没有观察到三种类型的纤维素颗粒之间模量的可测量差异。讨论了改进的做法和实验复杂性,用原子力显微镜表征纤维素纳米材料。

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