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Active surface modification for iron nanopowders produced by wire electrical explosion

机译:电线爆炸产生的铁纳米粉的活性表面改性

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摘要

The surface modification of metal iron nanopowders produced by wire electrical explosion (WEE) followed by immediate treatment with hexane, toluene, chloroform, and polymer solutions in hexane and toluene is investigated. It has been shown the nanopowders produced in the inert gas environment are shown to interact due to their active surface both with liquid media and with modifiers dissolved in them. X-ray diffraction and thermal analysis, including mass spectrometry, show that hexane is an inert liquid medium in respect to iron nanopowders, toluene treatment causes carbon deposition into the nanoparticle surface layers, and chloroform chemically interacts with iron nanoparticles with a high yield of FeCl _2. Thermal analysis and transmission electron microscopy show that treating nanopowders with an oleic acid (OA) solution in hexane and isoprene rubber and polystyrene solutions in toluene results in the formation of a polymeric coating with a thickness of 3-6 nm at the nanoparticle surface. The polymer amount adsorbed at the surface reaches 0. 4 mg/m ~2 depending on the polymer concentration in the solution. The deposited polymer layer has a loose structure formed by macromolecules adsorbed within the ball conformation.
机译:研究了通过线电爆炸(WEE),然后立即用己烷,甲苯,氯仿以及在己烷和甲苯中的聚合物溶液进行直接处理而生产的金属铁纳米粉末的表面改性。已经证明在惰性气体环境中产生的纳米粉由于其活性表面而与液体介质和溶解于其中的改性剂相互作用。 X射线衍射和热分析(包括质谱分析)表明,对于铁纳米粉而言,己烷是惰性液体介质,甲苯处理导致碳沉积到纳米颗粒表面层中,并且氯仿与铁纳米颗粒化学相互作用,从而产生高产率的FeCl _2。热分析和透射电子显微镜显示,用己烷中的油酸(OA)溶液和甲苯中的异戊二烯橡胶和聚苯乙烯溶液处理纳米粉会在纳米粒子表面形成厚度为3-6 nm的聚合物涂层。取决于溶液中聚合物的浓度,吸附在表面的聚合物量达到0. 4 mg / m〜2。沉积的聚合物层具有由球形构型中吸附的大分子形成的疏松结构。

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