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水与等离子体聚合丙烯醇(及富 OH 聚合物层的形成)中(自由基)的反应。

Reaction of water with (radicals in) plasma polymerized allyl alcohol (and formation of OH-rich polymer layers).

机构信息

BAM Federal Institute for Materials Research and Testing , Unter den Eichen 87, D-12205 Berlin, Germany.

出版信息

J Phys Chem B. 2013 Sep 12;117(36):10603-11. doi: 10.1021/jp406186x. Epub 2013 Aug 29.

Abstract

The pulsed plasma polymerization of allyl alcohol was employed under the aspect of maximal retention of OH groups and the formation of a regular polymer structure. It should be noted that earlier investigations on plasma polymers deposited from allyl alcohol did not show extensive postplasma addition of oxygen and water vapor from ambient air during storage, measuring the elemental O/C ratio by means of X-ray photoelectron spectroscopy (XPS).The identification of OH groups in the plasma polymerized polymer using FTIR spectroscopy was such an indicator for fragmentation. The peak area of OH groups in the film which was stored was increased by about 20% compared to that measured ("in situ"). These phenomenons reflected that moisture and O2 in air played an important role in scavenging the free radicals. The addition of water and more specifically chemical bonding of OH of water in the deposited plasma polymer may serve as an indicator for monomer fragmentation, poly recombination, and the remaining radicals responsible for film formation. Moreover, the dielectric measurements show that the plasma deposited films are not thermally stable but undergo a postplasma chemical reaction during heating, where the reaction kinetics depends on pressure.

摘要

采用脉冲等离子体聚合的烯丙醇在最大限度保留 OH 基团和形成规则聚合物结构的方面。需要指出的是,以前对从烯丙醇沉积的等离子体聚合物的研究并没有显示在储存过程中从周围空气中广泛地进行等离子体后添加氧和水蒸气,通过 X 射线光电子能谱(XPS)测量元素 O/C 比。使用傅里叶变换红外光谱(FTIR)光谱在等离子体聚合聚合物中鉴定 OH 基团是碎片的一个指标。与“原位”测量相比,储存的膜中 OH 基团的峰面积增加了约 20%。这些现象反映出空气中的水分和 O2 对清除自由基起着重要作用。水的添加,更具体地说,水的 OH 的化学键合,在沉积的等离子体聚合物中可能作为单体碎片、多重组和负责成膜的剩余自由基的指标。此外,介电测量表明,等离子体沉积的薄膜在受热时不稳定,但在受热时会发生等离子体后化学反应,其中反应动力学取决于压力。

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