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首页> 外文期刊>Journal of synchrotron radiation >Controllability of cupric particle synthesis by linear alcohol chain number as additive and pH control in cupric acetate solution using X-ray radiolysis
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Controllability of cupric particle synthesis by linear alcohol chain number as additive and pH control in cupric acetate solution using X-ray radiolysis

机译:用X射线辐射析出铜乙酸溶液中铜颗粒合成的可控性,用铜乙酸溶液中的添加剂和pH控制

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摘要

Synthesis and immobilization of caltrop cupric particles onto a Si substrate using X-ray radiolysis directly from a liquid solution of Cu(COOCH3)(2) is demonstrated. Caltrop cupric oxide particles are formed in the X-ray radiolysis of aqueous solutions of Cu(COOCH3)(2), which also contain methanol, ethanol, 2-propanol or 1-propanol as OH scavenger. The blade lengths of the caltrop particles are dependent on the alcohol chain length. In particular, it was found that an alkyl alcohol whose chain length is longer than four is unable to synthesize any particles in aqueous solutions of Cu(COOCH3)(2) in X-ray radiolysis. These results are attributed to the alkyl alcohol chain length influencing the rate of reaction of radicals and determines the solvable ratio of its alcohol into water. In addition, it was found that the synthesized particle geometric structure and composition can also be controlled by the pH of the aqueous solution in the X-ray radiolysis. This study may open a door to understanding and investigating a novel photochemical reaction route induced under X-ray irradiation. The development of the X-ray radiolysis process enables us to achieve the rapid and easy process of synthesis and immobilization of higher-order nano/microstructure consisting of various materials.
机译:通过直接由Cu(Cooch3)(2)的液体溶液,对Caltrop铜铜的合成和固定在Si衬底上。 Caltrop铜氧化物颗粒在Cu(Cooch3)(2)的水溶液的X射线辐射中形成,其还含有甲醇,乙醇,2-丙醇或1-丙醇作为oh清除剂。 Caltrop颗粒的叶片长度取决于醇链长度。特别地,发现其链长度长于四个的烷基醇不能在X射线辐射溶解中合成Cu(Cooch3)(2)的水溶液中的任何颗粒。这些结果归因于影响自由基反应速率的烷基醇链长度,并确定其醇的可溶性比例。另外,发现合成的颗粒几何结构和组合物也可以通过X射线辐射中的水溶液的pH控制。本研究可以打开理解和研究在X射线照射下诱导的新型光化学反应途径的大门。 X射线放射性分析过程的发展使我们能够实现由各种材料组成的高阶纳米/微结构的合成和固定的快速且易于加工。

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