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Changes in the supramolecular structures of cellulose after hydrolysis studied by terahertz spectroscopy and other methods

机译:太赫兹光谱法和其他方法研究水解后纤维素超分子结构的变化

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Hydrogen bonding is one of dominant forces in crystalline cellulose and lignocellulose, however, it is still a big challenge to evaluate the changes in the hydrogen bonding strength. Here, we reported a new method for measuring the changes in the hydrogen bonding strength of cellulose-based materials by terahertz time domain spectroscopy (THz-TDS). Avicel, corncob and their residual substrates after enzymatic hydrolysis were chosen as the targeted cellulose to demonstrate this method. THz adsorption in the range 0.5-2.5 THz and refractive index in the range 0.5-1.0 THz provided a direct signal corresponding to an increase in the hydrogen bonding strength for the residual samples (Avicel and corncob) after enzymatic hydrolysis. The THz results were further compared with those obtained from X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FTIR) analysis. As a quick and non-invasive technique, THz spectroscopy provides unique information about the changes in the hydrogen bonding strength of cellulose-based materials. Therefore, it is a promising way to directly evaluate the hydrogen bonding strength of cellulosic macromolecules.
机译:氢键是结晶纤维素和木质纤维素中的主要作用力之一,然而,评估氢键强度的变化仍然是一个很大的挑战。在这里,我们报道了一种通过太赫兹时域光谱法(THz-TDS)测量纤维素基材料氢键强度变化的新方法。酶水解后的Avicel,玉米芯及其残留底物被选为目标纤维素,以证明该方法。在0.5-2.5 THz范围内的THz吸附和在0.5-1.0 THz范围内的折射率提供了直接信号,该信号对应于酶水解后残留样品(Avicel和玉米芯)的氢键强度增加。将THz结果与通过X射线衍射(XRD)和傅立叶变换红外光谱(FTIR)分析获得的结果进行了进一步比较。作为一种快速且非侵入性的技术,太赫兹光谱学提供了有关纤维素基材料氢键强度变化的独特信息。因此,直接评估纤维素大分子的氢键强度是一种很有前途的方法。

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