Li Xiaobo, Rafie Ayda, Kalra Vibha, Lau Kenneth K S
Department of Chemical and Biological Engineering, Drexel University, Philadelphia, Pennsylvania 19104, United States.
Langmuir. 2020 Nov 3;36(43):13079-13086. doi: 10.1021/acs.langmuir.0c02539. Epub 2020 Oct 23.
Oxidative chemical vapor deposition (oCVD) offers unique advantages as a liquid-free processing technique in synthesizing and integrating conducting polymers, including polyaniline (PANI), by enabling conformal coatings onto nanostructured substrates, like carbon nanofibers. With relatively thick nanofiber mats, the challenge is to ensure uniform coating thickness through the porous substrates. Here, the substrate temperature during oCVD is found to be a primary factor influencing PANI coating uniformity. Coating uniformity is enhanced by operating at a higher substrate temperature, where monomer adsorption is believed to be limiting relative to intrinsic reaction kinetics. Also, a higher substrate temperature leads to significantly less PANI oligomers and more PANI in the emeraldine oxidation state. A systematic study of oCVD kinetics with substrate temperature shows a reaction-limited regime at lower substrate temperatures with an activation energy of 12.0 kJ/mol, which is believed to be controlled by the self-catalyzed PANI polymerization reaction that transitions at higher substrate temperatures above 90 °C to an adsorption-limited regime as indicated by a negative activation energy of -18.8 kJ/mol. Overall, by operating within an adsorption-limited oCVD regime, more uniform oCVD PANI coatings on electrospun carbon nanofiber mats have been achieved.
氧化化学气相沉积(oCVD)作为一种无液体处理技术,在合成和集成导电聚合物(包括聚苯胺(PANI))方面具有独特优势,它能够在纳米结构基底(如碳纳米纤维)上实现保形涂层。对于相对较厚的纳米纤维毡,挑战在于确保通过多孔基底实现均匀的涂层厚度。在此,发现oCVD过程中的基底温度是影响聚苯胺涂层均匀性的主要因素。通过在较高的基底温度下操作可提高涂层均匀性,据信在该温度下相对于本征反应动力学,单体吸附是限制因素。此外,较高的基底温度会导致聚苯胺低聚物显著减少,且处于翠绿亚胺氧化态的聚苯胺增多。对基底温度下oCVD动力学的系统研究表明,在较低基底温度下存在反应受限区域,其活化能为12.0 kJ/mol,这被认为是由自催化的聚苯胺聚合反应控制,该反应在高于90°C的较高基底温度下转变为吸附受限区域,其负活化能为 -18.8 kJ/mol表明了这一点。总体而言,通过在吸附受限的oCVD区域内操作,已在电纺碳纳米纤维毡上获得了更均匀的oCVD聚苯胺涂层。