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Studies on the spatial distribution of polymeric reagents in sonochemical reactions - application of competitive kinetics

机译:声化学反应中聚合试剂的空间分布研究-竞争动力学的应用

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Intense ultrasound may initiate chemical reactions in aqueous solutions.The reactivity is not uniform in the whole sonicated volume,but rather concentrated in the close vicinity of oscillating or collapsing gas bubbles formed by the action of ultrasound(cavitation bubbles).It has been shown that certain low-molecular-weight substrates,due to their partially hydrophobic properties,tend to accumulate at the surface of cavitation bubbles,thus being particularly susceptible to ultrasound-induced chemical reactions.In this paper,using an approach based on competition kinetics method,we demonstrate that this effect takes place also in the case of polymeric substrates.Relatively hydrophobic water-soluble polymer,poly(ethylene oxide),and its oligomer poly(ethylene glycol)accumulate in the close vicinity of the bubbles.Their local concentrations in these zones may be two orders of magnitude higher than the average concentration in solution.In contrast,such effect is observed neither for strongly hydrophilic polyelectrolyte chains exemplified by poly(acrylic acid),nor for dissociated sodium acetate used as a low-molecular-weight hydrophilic model.The ultrasound-induced processes employed in the competition kinetics study in this work were the reactions of substrates with hydroxyl radicals emerging from the cavitation bubbles.In order to provide quantitative comparison with a system of uniform reactivity distribution,the same reactions were studied using ionizing radiation for OH-radicals generation.
机译:强烈的超声可能会在水溶液中引发化学反应。反应性在整个超声处理的体积中并不均匀,而是集中在超声作用下形成的振荡或塌陷的气泡附近(空化气泡)。某些低分子量的底物由于其部分疏水性而倾向于在空化气泡表面积聚,因此特别容易受到超声诱导的化学反应的影响。本文采用基于竞争动力学方法的方法证明相对于疏水性的水溶性聚合物聚环氧乙烷及其低聚物聚乙二醇在气泡的附近会聚积。可能比溶液中的平均浓度高两个数量级。相反,对于强浓度y以聚丙烯酸为例的亲水性聚电解质链,也未用于离解乙酸钠作为低分子量亲水性模型。这项工作在竞争动力学研究中采用的超声诱导过程是底物与羟基自由基的反应。为了与均匀反应性分布的系统进行定量比较,使用电离辐射研究了相同的反应,以产生OH自由基。

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