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首页> 外文期刊>Plasma processes and polymers >Deposition of Functional Organic Thin Films by Pulsed Plasma Polymerization: A Joint Theoretical and Experimental Study
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Deposition of Functional Organic Thin Films by Pulsed Plasma Polymerization: A Joint Theoretical and Experimental Study

机译:脉冲等离子体聚合沉积功能有机薄膜的理论和实验研究

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摘要

The pulsed plasma polymerization of allylamine and cyclopropylamine is investigated to study the influence of the precursor chemical structure on the process selectivity toward the primary amine groups. Both systems are compared under similar mean powers injected in the discharges (P_(mean))- The results reveal an increase in the precursor fragmentation in the plasma and a decrease in the primary amine content of the film (%NH_2) as P_(mean) increases. Nevertheless, below a critical P_(mean) value, different behaviors are observed depending on the precursor, cyclopropylamine being less plasma-fragmented than allylamine. As a result, plasma polymer films (PPF) synthesized from cyclopropylamine yield the largest %NH_2. Thesernresults are rationalized with the help of theoretical calculations pointing to a preferential opening of the cyclopropylamine ring structure. Cyclopropylamine activation in the plasma can thus be achieved without fragmentation reactions, leading to a more efficient incorporation of the -NH_2 group of the precursor in the PPF.
机译:研究了烯丙胺和环丙胺的脉冲等离子体聚合反应,以研究前体化学结构对伯胺基团工艺选择性的影响。在放电中注入的平均功率相似的情况下比较了两个系统的平均功率(P_(平均值))。结果表明,血浆中前体裂解的增加和薄膜中伯胺含量的降低(%NH_2)为P_(平均值)增加。然而,低于临界P_(平均值)值,根据前体观察到不同的行为,环丙胺比烯丙胺的血浆碎片少。结果,由环丙胺合成的等离子聚合物膜(PPF)产生最大的%NH_2。在理论计算的帮助下合理化了这些结果,指出环丙胺环结构的优先开放。因此,可以在血浆中进行环丙胺活化而不发生断裂反应,从而导致更有效地将前体的-NH_2基团掺入PPF中。

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  • 来源
    《Plasma processes and polymers》 |2010年第2期|172-181|共10页
  • 作者单位

    Laboratoire de Chimie Inorganique et Analytique, Universite de Mons, Place du Pare 20, B-7000 Mons, Belgium;

    Service de Chimie des Materiaux Nouveaux, Universite de Mons, Place du Pare 20, B-7000 Mons, Belgium;

    Service de Chimie des Materiaux Nouveaux, Universite de Mons, Place du Pare 20, B-7000 Mons, Belgium;

    Materia Nova Research Center, Pare Initialis, Avenue N. Copernic 1, B-7000 Mons, Belgium;

    Service de Chimie des Materiaux Nouveaux, Universite de Mons, Place du Pare 20, B-7000 Mons, Belgium Materia Nova Research Center, Pare Initialis, Avenue N. Copernic 1, B-7000 Mons, Belgium;

    Laboratoire de Chimie Inorganique et Analytique, Universite de Mons, Place du Pare 20, B-7000 Mons, Belgium Materia Nova Research Center, Pare Initialis, Avenue N. Copernic 1, B-7000 Mons, Belgium;

    Service de Chimie des Materiaux Nouveaux, Universite de Mons, Place du Pare 20, B-7000 Mons, Belgium;

    Laboratoire de Chimie Inorganique et Analytique, Universite de Mons, Place du Pare 20, B-7000 Mons, Belgium Materia Nova Research Center, Pare Initialis, Avenue N. Copernic 1, B-7000 Mons, Belgium;

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