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Effect of crystalline structure on the trapped radical spectra of irradiated cellulose

机译:晶体结构对辐照纤维素俘获自由基光谱的影响

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AbstractThe effects of crystalline modification of cellulose and of water on the ESR spectra generated by the trapped free radicals in gamma‐irradiated celluloses were investigated for cotton cellulose I, II, III, and IV, partially decrystallized cotton cellulose, ballmilled cotton cellulose, hydrocelluloses of cellulose III and IV, and ramie. On irradiation of the celluloses, free radicals were formed on the cellulose molecule, probably following dehydrogenation or chain cleavage. The free radicals located within the less ordered or amorphous regions of the cellulose reacted readily with water and were terminated. The radicals located within the more ordered regions of the celluloses could be made accessible to reaction with water by the interaction of the celluloses with solvents which caused dimensional changes in the cellulosic structure. In the highly ordered regions of the celluloses, even after long periods of time in solvents which caused large dimensional changes in the cellulosic structure, the trapped free radicals were not terminated by reaction with solvent or water. The ESR spectra of the irradiated, dried celluloses were determined at −160°C, the single‐line spectra recorded had line widths of about 18‐24 gauss. On the absorption of water by the irradiated celluloses, the ESR spectra changed and were dependent on the crystalline structure of the irradiated celluloses. The effects of different arrangements of the irradiated celluloses, as shown by their trapped radical spectra, particularly after interaction with water, were d
机译:摘要研究了棉纤维素I、II、III、IV.棉纤维素、球磨棉纤维素、纤维素III.和IV水碾压水纤维素和苎麻纤维素中捕获的自由基对γ辐照纤维素中捕获的自由基产生的ESR谱的影响。在纤维素的辐照下,自由基在纤维素分子上形成,可能是在脱氢或断链之后。位于纤维素的无序或无定形区域内的自由基很容易与水反应并被终止。通过纤维素与溶剂的相互作用,位于纤维素更有序区域内的自由基可以与水反应,从而引起纤维素结构的尺寸变化。在纤维素的高度有序区域,即使在溶剂中长时间使用,导致纤维素结构发生较大的尺寸变化,捕获的自由基也不会因与溶剂或水的反应而终止。辐照干燥纤维素的ESR光谱在−160°C下测定,记录的单线光谱的线宽约为18-24高斯。在辐照纤维素对水的吸收中,ESR光谱发生了变化,并且取决于辐照纤维素的晶体结构。辐照纤维素不同排列的影响,如其捕获的自由基光谱所示,特别是在与水相互作用后,是 d

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