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Influence of Water on the Structure and Dielectric Properties of the Microcrystalline and Nano-Cellulose

机译:水对微晶和纳米纤维素结构和介电性能的影响

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摘要

Influence of water in the different states on a structure and dielectric properties of microcrystalline cellulose were studied by of X-ray, thermogravimetry, and dielectric spectroscopy. At research of microcrystalline cellulose (MCC) with different content of water, it is shown that the molecules of water are located in the macropores of MCC and in multimolecular hydrated layers. It is shown that at the increase of concentration of water in a hydrated shell, the reorganization of molecules of cellulose in the surface of crystallites takes place, and as a result, their transversal size and crystallinity increase. It is shown that during the concentration of water, more than 13% in a continuous hydrated shell of crystallites appears. Temperature dependences of actual and imaginary parts of complex dielectric permittivity were studied in the interval of temperatures [−180 ÷ 120] °C on frequencies of f = 5, 10, 20, and 50 kHz. A low-temperature relaxation process and high-temperature transition were observed. Low-temperature relaxation process which is related to transition of surface methylol groups of molecules of cellulose conformation from tg to tt is shifted toward low temperatures at the increase of concentration of water in microcrystalline cellulose.
机译:通过X射线,热重分析和介电谱研究了水在不同状态下对微晶纤维素结构和介电性能的影响。在研究不同含水量的微晶纤维素(MCC)时,表明水分子位于MCC的大孔和多分子水合层中。结果表明,随着水合壳中水浓度的增加,微晶表面的纤维素分子发生重组,结果,其横向尺寸和结晶度增加。结果表明,在水浓缩过程中,在连续的水合微晶壳中出现了13%以上的水。在温度[−180÷120]°C的区间内,以f = 5、10、20和50kHz的频率研究了复介电常数的实际和虚部的温度依赖性。观察到低温松弛过程和高温转变。与纤维素构象的分子的表面羟甲基基团从tg过渡到tt有关的低温松弛过程随着微晶纤维素中水浓度的增加而向低温转移。

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