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Preparation, Characterization and Performance of Polyethersulfone(PES) - Polyaniline(Pani) Blended Membrane

机译:聚醚砜(PES) - 聚苯胺(PANI)混纺膜的制备,表征和性能

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Polyaniline nanoparticle was synthesized via the chemical oxidation of aniline with ammonium persulphate in aqueous hydrochloric acid where the polyaniline particle size obtained was in the range of 22-53 nm. Polyaniline is one type of conducting polymers, where this polymer exhibit high electrical conductivity and have a wide range of interesting application due to its light weight, conductivity and chemical properties. Amongst the family of conducting polymers, polyaniline is unique due to ease of synthesis, environmental stability, simple doping/dedoping chemistry and relatively inexpensive cost. Polyaniline has been used to improve hydrophilic property and permeability of substrate membrane. It is used to obtain superhydrophilic surface because of their high surface energy and hydrophilic property. In this research, these nanoparticles have been used to improve hydrophilic property and permeability of polyethersulfone membrane. The blended membrane was characterized using pure water flux, Scanning Electron Microscope (SEM), and contact angle. As a result, polyaniline can distribute stably in polyaniline membrane to produce stable structure and preferable performance.
机译:通过苯胺的化学氧化在盐酸水溶液中用苯胺的化学氧化合成聚苯胺纳米粒子,其中获得的聚苯胺粒度为22-53nm。聚苯胺是一种导电聚合物,其中该聚合物具有高电导率,并且由于其轻的重量,导电性和化学性质而具有很多有趣的应用。在导电聚合物的家族中,聚苯胺由于易于合成,环境稳定性,简单的掺杂/缩小化学和相对便宜的成本而独特。聚苯胺已用于改善底物膜的亲水性和渗透性。由于其高表面能和亲水性,它用于获得超硫酸化表面。在该研究中,这些纳米颗粒已被用于改善聚醚砜膜的亲水性和渗透性。使用纯净水通量,扫描电子显微镜(SEM)和接触角表征混合膜。结果,聚苯胺可以在聚苯胺膜中稳定地分布,以产生稳定的结构和优选的性能。

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