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Interaction study between M-Phenylenediamine,Trimesoyl Chloride and Nylon 66 using Molecular Dynamic Simulation

机译:M-苯二胺,三咪酰氯和尼龙66的相互作用研究使用分子动态模拟

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The thin film composite(TFC)membrane is a porous membrane layered by a polyamide active layer.In the experimental work,the polyamide active layer prepared by the interaction between monomers,m-phenylenediamine(MPD)and trimesoyl chloride(TMC)which deposited on a membrane support.Considering the possibility of producing a loose TFC membrane and affect the separation performance,this study enlightens the interaction between monomers with Nylon 6 6(N66)support membrane using simulation-molecular dynamic(MD).Different simulation system has been investigated with varying the ratio molecule of MPD to TMC where,TFC 1(1:1),TFC2(3:1)and TFC3(3:2)to the tertiary system of N66/MPD/TMC.The simulation was set for a COMPASS force field,where the equilibrium phases in a micro-canonical(constant volumes and total energy)(NVE)followed by run-production stage(constant pressure and temperature ensembles)(NPT)ensembles.The temperature and pressure were set at 323.15 K and latm respectively.The polyamide TFC was found to be formed by the main interactions between nitrogen(N)from MPD group to the carbon,(C)from TMC main chain at ranges of 4.25A.Overall interaction can be observed between N from TFC layer with O atom from the substrate layer.All of the intermolecular interactions take place at 3.25A distance.The best interaction in N66 to MPD and TMC system to the weakest is in the arrangement of TFC2>TFC3>TFC 1.The highest intensity was obtained by the TFC2,indicating the best ratio of 3:1 of MPD molecules to TMC molecule with support polymer when fully polymerized occurred.This study suggests that ratio N66 to MPD and TMC in TFC2 is the best to interaction between TFC layer and substrate for fabrication of the TFC membrane.
机译:薄膜复合材料(TFC)膜是由聚酰胺活性层分层的多孔膜。在实验工作中,通过沉积的单体,M-苯二胺(MPD)和三咪酰氯(TMC)之间的相互作用制备的聚酰胺活性层膜载体。参考生产松散TFC膜并影响分离性能的可能性,本研究启示了使用模拟 - 分子动态(MD)与尼龙66(N66)支撑膜​​的单体之间的相互作用。已经研究了各种仿真系统在N66 / MPD / TMC的第三系统中,将MPD与TMC的比例分子改变为TMC,TFC 1(1:1),TFC2(3:1)和TFC3(3:2)。为指南针设定了模拟力场,其中微常规范(恒定体积和总能量)(NVE)中的平衡相,随后是运行制作阶段(恒压和温度集成)(NPT)合奏。温度和压力设定为323.15 k和Latm分别。聚酰胺TF发现C被发现通过MPD基团与来自4.25A的TMC主链的碳的主要相互作用形成4.25A.OVERALL相互作用,从TFC层与来自的O原子之间的N.底物层。分子间相互作用的所有距离发生。N66至MPD和TMC系统中最佳的最佳相互作用是TFC2> TFC3> TFC1的布置。通过TFC2获得最高强度,表明当发生完全聚合时,MPD分子的最佳比例为3:1与支持聚合物的TMC分子。该研究表明,TFC2中的比率N66至MPD和TMC在TFC层和用于制造TFC膜的基材之间最好的相互作用。

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