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使用碳氢化合物的低压和常压等离子体聚合过程中的能量转换效率。

Energy conversion efficiency in low- and atmospheric-pressure plasma polymerization processes with hydrocarbons.

作者信息

Hegemann Dirk, Nisol Bernard, Gaiser Sandra, Watson Sean, Wertheimer Michael R

机构信息

Empa, Swiss Federal Laboratories for Materials Science and Technology, Plasma & Coating Group, Lerchenfeldstrasse 5, 9014 St. Gallen, Switzerland.

出版信息

Phys Chem Chem Phys. 2019 Apr 24;21(17):8698-8708. doi: 10.1039/c9cp01567a.

Abstract

Since the earliest days of this field there has been an interest in correlating the structure of plasma polymer (PP) coatings with deposition parameters, most particularly with energy input per monomer molecule, Em. Both of our laboratories have developed methods for measuring Em (or somewhat equivalent, the apparent activation energy, Ea) in low- (LP) and atmospheric-pressure (AP) electrical discharge plasmas. We recently proposed a new parameter, energy conversion efficiency (ECE), which for the first time permits direct comparison of LP and AP experiments. Here, we report the case of small hydrocarbons, namely acetylene, ethylene and methane. "Critical" Em (or Ea) values that demarcate ECE regimes separating different reaction mechanisms are found to agree remarkably well, and to correlate with specific reaction mechanisms, including dissociation, recombination, gas-phase oligomerization, and surface processes.

摘要

自该领域早期以来,人们就一直对将等离子体聚合物(PP)涂层的结构与沉积参数相关联感兴趣,尤其是与每个单体分子的能量输入Em相关联。我们两个实验室都开发了在低压(LP)和大气压(AP)放电等离子体中测量Em(或某种等效的表观活化能Ea)的方法。我们最近提出了一个新参数,即能量转换效率(ECE),它首次允许对LP和AP实验进行直接比较。在这里,我们报告小分子烃的情况,即乙炔、乙烯和甲烷。发现划分不同反应机制的ECE区域的“临界”Em(或Ea)值非常吻合,并与特定反应机制相关,包括解离、重组、气相低聚和表面过程。

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