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Nanometrology of delignified Populus using mode synthesizing atomic force microscopy

机译:用模式合成原子力显微镜对脱木胡杨的纳米计量学

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摘要

The study of the spatially resolved physical and compositional properties of materials at the nanoscale is increasingly challenging due to the level of complexity of biological specimens such as those of interest in bioenergy production. Mode synthesizing atomic force microscopy (MSAFM) has emerged as a promising metrology tool for such studies. It is shown that, by tuning the mechanical excitation of the probe-sample system, MSAFM can be used to dynamically investigate the multifaceted complexity of plant cells. The results are argued to be of importance both for the characteristics of the invoked synthesized modes and for accessing new features of the samples. As a specific system to investigate, we present images of Populus, before and after a holopulping treatment, a crucial step in the biomass delignification process.
机译:由于诸如生物能源生产中所关注的生物标本的复杂性水平,对纳米级材料在空间上分辨的物理和组成性质的研究日益具有挑战性。模式合成原子力显微镜(MSAFM)已成为此类研究的有前途的计量工具。结果表明,通过调节探针-样品系统的机械激发,MSAFM可用于动态研究植物细胞的多方面复杂性。据认为,结果对于所调用的合成模式的特征和访问样本的新特征均具有重要意义。作为要研究的特定系统,我们提供了全果皮处理之前和之后的胡杨图像,这是生物量脱木质素过程中的关键步骤。

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