Kinetics and thermodynamics analysis of the polybenzimidazole adsorption onto carbon materials using adsorption isotherm measurements

IF 2.3 4区 化学 Q3 POLYMER SCIENCE
A. B. M. Nazmul Islam, Nana Kayo, Yuki Motoishi, Ryo Hamano, Naoki Tanaka, Koichiro Kato, Tsuyohiko Fujigaya
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Abstract

The surface modification of carbon materials is an effective method for enhancing the properties of carbon-based functional materials; particularly, the use of a polymer coating is advantageous owing to its intactness and simplicity. Polybenzimidazole (PBI) has been used to modify carbon surfaces, yet its adsorption behavior has not been thoroughly examined. In this study, the adsorption kinetics and thermodynamics of PBI adsorption on various types of carbon black with different surface morphologies and chemical compositions were analyzed via isotherm measurements. To determine the effects of the polymer, its adsorption behavior was compared to that of the PBI monomer (1,3-bis(1H-benzo[d]imidazol-2-yl)benzene (referred to as the PBI-unit)). The surface adsorption of PBI was slower than that of the PBI-unit; however, PBI exhibited a greater adsorption capacity. The PBI adsorption is an entropy-driven process, whereas PBI-unit adsorption is enthalpy-driven. The adsorption of PBI was more thermodynamically favorable on carbon surfaces with higher crystallinity (lower oxygenation) owing to the easier detachment of solvent molecules from the carbon surface, leading to a higher adsorption constant.

Abstract Image

利用吸附等温线测量法对碳材料上的聚苯并咪唑吸附进行动力学和热力学分析
对碳材料进行表面改性是提高碳基功能材料性能的一种有效方法;特别是,使用聚合物涂层因其完好性和简便性而具有优势。聚苯并咪唑(PBI)已被用于改性碳表面,但其吸附行为尚未得到深入研究。本研究通过等温线测量,分析了 PBI 在具有不同表面形态和化学成分的各种类型炭黑上的吸附动力学和热力学。为了确定聚合物的影响,将其吸附行为与 PBI 单体(1,3-双(1H-苯并[d]咪唑-2-基)苯,简称 PBI-单元)的吸附行为进行了比较。PBI 的表面吸附速度比 PBI 单位慢,但 PBI 的吸附能力更大。PBI 的吸附是一个熵驱动过程,而 PBI 单元的吸附是焓驱动过程。在结晶度较高(含氧度较低)的碳表面,PBI 的吸附在热力学上更有利,这是因为溶剂分子更容易从碳表面脱离,从而导致吸附常数较高。
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来源期刊
Polymer Journal
Polymer Journal 化学-高分子科学
CiteScore
5.60
自引率
7.10%
发文量
131
审稿时长
2.5 months
期刊介绍: Polymer Journal promotes research from all aspects of polymer science from anywhere in the world and aims to provide an integrated platform for scientific communication that assists the advancement of polymer science and related fields. The journal publishes Original Articles, Notes, Short Communications and Reviews. Subject areas and topics of particular interest within the journal''s scope include, but are not limited to, those listed below: Polymer synthesis and reactions Polymer structures Physical properties of polymers Polymer surface and interfaces Functional polymers Supramolecular polymers Self-assembled materials Biopolymers and bio-related polymer materials Polymer engineering.
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