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The synthesis, characterization and effect of molar mass distribution on solid-state degradation kinetics of oligo(orcinol)

机译:摩尔质量分布对寡核苷酸(Orcinol)固态降解动力学的合成,表征及影响

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In this study, the oxidative polymerization of orcinol monohydrate using different oxidants such as NaOCl, H2O2, and air was investigated. Polymerization studies were carried out between 50 and 90 degrees C. The optimum reaction conditions of the polymerization were also established. NaOCl was found to be the most active oxidant. The characterization of oligo(orcinol) was conducted by using FT-IR, H-1-NMR and C-13-NMR, TGA, size exclusion chromatography (SEC) and solubility techniques. At the optimum reaction conditions, the conversion to oligomer of orcinol was found to be 62% (for NaOCl oxidant), 42% (for H2O2 oxidant), and 21% (for air oxidant). According to the SEC analysis, the number-average molecular mass (M-n), mass-average molecular mass (M-w) and polydispersity index (PDI) values of oligo(orcinol) were determined to be 2260, 2540 g mol(-1), and 1.12, using NaOCl, and 2170, 2470 g mol(-1), and 1.14, using H2O2 and 1500, 1770 g mol(-1), and 1.18, using air, respectively. In addition, the relationship between molar mass distributions and activation energies of thermal degradation processes of oligo(orcinol) was investigated by using TG analysis. For this purpose, the methods based on multiple heating rates such as Flynn-Wall-Ozawa [FWO], Tang, and Kissinger-Akahira-Sunose [KAS] were used. The activation energy related to the solid-state decomposition of oligo(orcinol) synthesized with NaOCl oxidant was calculated to be 79.02 kJ mol(-1) by KAS method, 78.74 kJ mol(-1) by Tang method and 81.78 kJ mol(-1) by FWO method in the range of 0.05 < alpha < 0.95. The results obtained show that activation energy increased with an increase in molar mass.
机译:在该研究中,研究了使用不同氧化剂如NaOCl,H 2 O 2和空气的奥替尼醇一水合物的氧化聚合。聚合研究在50至90℃之间进行。还建立了聚合的最佳反应条件。发现NaoCl是最活跃的氧化剂。通过使用FT-IR,H-1-NMR和C-13-NMR,TGA,尺寸排阻色谱(SEC)和溶解度技术进行寡聚醇(Orcinol)的表征。在最佳反应条件下,发现对Orcinol的低聚物的转化为62%(对于NaoCl氧化剂),42%(对于H 2 O 2氧化剂)和21%(用于空气氧化剂)。根据SEC分析,测定寡核苷酸(Orcinol)的数均分子量(Mn),质量平均分子质量(MW)和多分散性指数(PDI)值为2260,2540g mol(-1), 1.12,使用NaOCl和2170,2070g mol(-1)和1.14,分别使用空气使用H 2 O 2和1500,1770g mol(-1)和1.18。此外,通过使用TG分析研究了寡核苷酸(Origool)热降解过程的摩尔质量分布和激活能的关系。为此目的,使用了基于多种加热速率的方法,例如Flynn-Wall-ozawa [FWO],Tang和Kissinger-Akahira-Sunose [Kas]。用KAS方法计算与NoOCl氧化剂合成的寡核苷酸(Orcinol)的固态分解的活化能量,通过KAS方法,78.74kJ摩尔(-1)通过唐法,81.78kJ摩尔( - 1)通过FWO方法在0.05

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