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首页> 外文期刊>Chemical engineering journal >A facile process to fabricate metal coating on PET sheet: Preparation of highly active polymer brush/Ag particle and its application in electroless copper plating
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A facile process to fabricate metal coating on PET sheet: Preparation of highly active polymer brush/Ag particle and its application in electroless copper plating

机译:用于制造PET板上的金属涂层的容易工艺:高活性聚合物刷/ Ag颗粒的制备及其在化学镀铜中的应用

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摘要

Electroless plating on polymer surface is a low-cost process for surface metallization, but it exhibits low adhesive force and complex production process, which makes it difficult for practical application. We employ a facile method combined with novel catalyst solution printing and electroless plating to fabricate high-adhesion copper coating on (polyethylene terephthalate (PET). The catalyst solution is a mixture of AgNO3, PVA, KH550, alcohol and deionized water. On the one hand, hydrophilic PVA and hydrophobic KH550 condense to helical conformation catalyst solution, which could synergistically absorb Ag. On the other hand, the two phases separation structure facilitate the formation of roughness surface. As a result, the catalyst solution can form highly active polymer brush/Ag particle structure on the PET surface, and realize to modify and activate PET simultaneously. Region-selective copper coating could plate on PET surface, the maximum effective thickness is 3.6 mu m, rupture work is 4.5 J/m(2), adhesion is 5B, electrical resistivity is 2.3 x 10(-6) Omega cm. While maintaining reliability even after over 6 times of folding test and 1000 times of bending. Our results provide the underlying insights needed to guide the design of the fabrication of metal polymer.
机译:聚合物表面上的化学镀是表面金属化的低成本过程,但它表现出低粘合力和复杂的生产过程,这使得实际应用难以实现。我们采用了共用方法与新型催化剂溶液印刷和化学镀的化学镀,以制造高粘合铜涂层(聚对苯二甲酸乙二醇酯(PET)。催化剂溶液是AgNO3,PVA,KH550,醇和去离子水的混合物。在一个手,亲水PVA和疏水性KH550浓缩至螺旋形容催化剂溶液,这可以协同吸收Ag。另一方面,两个相分离结构有助于形成粗糙表面。结果,催化剂溶液可以形成高活性的聚合物刷子/ Ag粒子结构在PET表面上,并同时实现了修饰和激活宠物。区域选择性铜涂层可以板在PET表面上板,最大有效厚度为3.6μm,破裂工作为4.5J / m(2),粘附是5b,电阻率为2.3 x 10( - 6)omega cm。即使在折叠试验中超过6倍的折叠测试后保持可靠性,我们的结果提供了U.需要指导金属聚合物制造设计所需的洞察。

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