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Synergistic functionalization of h-BN by mechanical exfoliation and PEI chemical modification for enhancing the corrosion resistance of waterborne epoxy coating

机译:机械剥离和PEI化学改性来增强水性环氧涂层耐腐蚀性的H-BN协同官能化

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摘要

The hexagonal boron nitride (h-BN) has extensive promise for metal corrosion protection due to its good impermeability to gas and liquid. However, the practical application of h-BN in polymer composites is limited by surface incompatibility. Herein, we prepared a homogeneous dispersion of h-BN in water-borne epoxy (EP) matrix by mechanical exfoliation and chemical modification, in which the h-BN powder was ultrasonic to obtain partially hydroxylated BN and the products were modified with water-soluble branched poly-ethyleneimine (PEI) via Lewis acid-base interaction. The electrochemical test (EIS and potentiodynamic polarization) and salt spray test in NaCl solution were used to analyze the corrosion resistance performance of composite coatings. The results show that PEI-BNNS/EP coating has superior and long-term anticorrosion performance for P110 mild steel. The impedance modulus (Z(f) = 0.01 Hz) of PEI-BNNS/EP still has 6.63 x 10(7) Omega cm(2) after 70 days immersion in the 3.5 wt. % NaCl solution. The PEI has an important role for enhancing the anticorrosion property of PEI-BNNS/EP coating, which increases the dispersibility and compatibility of h-BN in EP and the crosslink density of epoxy resin. Our study gives a strategy for the preparation of easy dispersion h-BN nanosheets in large quantities, thus broadening its practical application in the polymer material field.
机译:六边形氮化硼(H-BN)由于其对气体和液体的良好不渗透性而具有广泛的金属腐蚀保护。然而,H-Bn在聚合物复合材料中的实际应用受表面不相容性的限制。在此,我们通过机械剥离和化学改性制备了H-Bn在水性环氧树脂(EP)基质中的均匀分散,其中H-BN粉末超声波得到部分羟基化的BN,并用水溶性改性产物通过路易斯酸碱相互作用分支聚乙烯亚胺(PEI)。 NaCl溶液中的电化学试验(EIS和电位偏振)和盐雾试验用于分析复合涂层的耐腐蚀性性能。结果表明,PEI-BNNS / EP涂层对P110温和钢具有优异的和长期的防腐性能。 PEI-BNNS / EP的阻抗模量(Z(F)= 0.01Hz)仍然具有6.63×10(7)ωcm(2)在3.5重量%中浸泡后70天后。 %NaCl溶液。 PEI对增强PEI-BNNS / EP涂层的防腐性具有重要作用,这增加了H-BN在EP中的分散性和相容性和环氧树脂的交联密度。我们的研究给出了大量易于分散的H-BN纳米片的策略,从而扩大了其在聚合物材料场中的实际应用。

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