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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >A novel self-assembly approach to form tubular poly(diphenylamine) inside the mesoporous silica
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A novel self-assembly approach to form tubular poly(diphenylamine) inside the mesoporous silica

机译:一种新颖的自组装方法,可在中孔二氧化硅内部形成管状聚二苯胺

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MCM-41 materials were synthesized using alkyl(decosane,dodecyl)trimethyl ammonium bromide as structure directing surfactants.X-ray diffraction (XRD) analysis and nitrogen adsorption measurements reveal that the pores are hexagonal with tunable textural properties through the choice of surfactant and experimental condition.Poly(diphenylamine),PDPA was entrapped into the pores of MCM-41 by initial sorption of diphenylamine (DPA,monomer) in a medium (napthalein sulfonic acid) that provides self-assembling of DPA inside the pores and subsequent oxidative of polymerization with peroxydisulphate.Clear presence of an additional peak (around 9-10deg) in XRD pattern for the DPA loaded MCM-41 provides evidence for self-assembled structure.Upon polymerization the self-assembly of DPA molecules resulted tubular PDPA inside the pores of MCM-41.PDPA thus formed shows different electronic property than the PDPA prepared by conventional method.XRD and FTIR spectroscopic analysis of PDPA loaded MCM-41 clearly informs that PDPA are entrapped in channels of MCM-41.
机译:以烷基(癸烷,十二烷基)三甲基溴化铵为结构导向表面活性剂合成了MCM-41材料。X射线衍射(XRD)分析和氮吸附测量表明,通过选择表面活性剂和实验,孔为六角形,具有可调节的织构性质。聚(二苯胺),PDPA通过在介质(萘酞磺酸)中最初吸附二苯胺(DPA,单体)吸附到MCM-41的孔中,该介质提供DPA在孔内的自组装并随后氧化聚合载有DPA的MCM-41的XRD图谱中清楚地存在一个额外的峰(约9-10度),为自组装结构提供了证据。聚合后,DPA分子的自组装导致MCM孔内的管状PDPA -41。由此形成的PDPA显示出与通过常规方法制备的PDPA不同的电子性质。负载PDPA的MCM-41的XRD和FTIR光谱分析清楚地告知PDPA被困在MCM-41的信道中。

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