成功设计了氧化石墨烯- ZnO纳米棒基三元纳米复合材料作为超疏水防腐蚀涂层

ty10086 提交于 周三, 08/25/2021 - 16:02
文章英文标题
Facile design of graphene oxide-ZnO nanorod-based ternary nanocomposite as a superhydrophobic and corrosion-barrier coating
正文
我们报道了一种简单设计的ZnO纳米棒修饰的聚二甲基硅氧烷( PDMS ) /氧化石墨烯纳米片三元纳米复合材料( GO-ZnO NRs ),作为一种优异的超疏水防腐涂料应用于钢铁基体。采用一步化学浴沉积法制备了GO-ZnO杂化纳米填料,并采用溶液浇铸法制备了三元纳米复合材料。分级ZnO NRs为单晶,平均宽度40 ~ 50   nm,平均长度\u003c 1  μm,纤锌矿结构,在[ 0001 ]晶向外露出点。这些NR被修饰在\u003c 2   nm厚的GO片层上,具有纳米级的尺寸、形貌和几何构型。将PDMS / GO - ZnO三元纳米复合材料通过水化固化干燥。考察了分散在PDMS树脂中的不同浓度GO-ZnO杂化纳米填料对阻隔性能和防腐性能的影响。研究了纳米复合涂层的表面特性,包括自由能、超疏水、化学不均匀性和微纳米粗糙度。将碳钢作为相对浸泡表面,在3.5 % NaCl溶液中进行Tafel极化曲线、电化学阻抗谱、开路电位等电化学实验。对涂层试样进行500   h的盐雾试验,研究其耐腐蚀性能。结果表明,添加质量分数为1  %的GO-ZnO杂化纳米填料的有机硅复合材料具有优异的涂层性能。该复合材料表现出较强的超疏水和粗糙度,水接触角为151°,具有一定的耐腐蚀性。因此,所设计的PDMS / GO-ZnO三元纳米复合材料具有优异的超疏水和防腐性能,可用于下一代防腐涂料的设计。
文章内容(英文)
We reported a facile design of ternary nanocomposites of polydimethylsiloxane (PDMS)/graphene oxide nanosheets decorated with ZnO nanorods (GO-ZnO NRs) as an outstanding superhydrophobic and anticorrosion coating material for steel substrates. GO-ZnO hybrid nanofiller was synthesized using a one-step chemical bath deposition, and the ternary nanocomposite was fabricated by solution casting. Hierarchical ZnO NRs were single crystals with 40–50 nm average width, \u003c 1 μm average length, wurtzite structure, and exposed site in the [0001] crystal orientation. These NRs were decorated on \u003c 2 nm-thick sheets of GO with nanoscale sizes, morphologies, and geometries. The PDMS/GO-ZnO ternary nanocomposite was dried through hydrosilation curing. The effects of different concentrations of GO-ZnO hybrid nanofiller dispersed in the PDMS resin on the barrier and anticorrosion properties were investigated. Surface features, including free energy, superhydrophobicity, chemical heterogeneity, and micro-nano roughness of the nanocomposite coatings were also studied. Electrochemical experiments including determination of Tafel polarization, electrochemical impedance spectra, and open circuit potential were conducted over carbon steel as the relatively immersed surface in a solution of 3.5% NaCl. Salt spray test was performed on the coated specimens for 500 h to study their corrosion protection. Results indicated that the silicone composite with 1 wt.% of GO-ZnO hybrid nanofillers exhibited excellent coating performance. This composite showed enhanced superhydrophobicity and roughness with water contact angle of 151° and corrosion protection. Hence, the designed PDMS/GO-ZnO ternary nanocomposite possesses outstanding superhydrophobic and anticorrosion features and could be used to design next-generation anticorrosive coatings.
来源出处
Journal|[J]Colloids and Surfaces A: Physicochemical and Engineering AspectsVolume 611, 2021.
DOI
https://doi.org/10.1016/J.COLSURFA.2020.125793

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