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Integration of Gold Nanoparticles into NIR-Radiation Curable Powder Resin

机译:将金纳米颗粒整合到NIR辐射可固化的粉末树脂中

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Gold nanoparticles were integrated into a maleate polyester/ vinylurethane powder coating by mixing the prepolymer with a colloid comprising either tetrahydrofurane or tripropylenegly- coldiacrylate as continuous phase. This slurry was extruded resulting in a homogeneous distribution of nanoparticles in the resin. Curing of the powder coating occurred by near infrared (NIR) photopolymerization. The initiator system comprised the heptamethine cyanine absorber S2265 and bis-(4-(t-butyl)- phenyl)iodonium bis(trifluoromethylsulfonyl)imide as radical initiator. The use of NIR-LED arrays as a light source for photopolymerization of the powder coating is insufficient due to the low emission intensity. In addition, absorption and scattering of nanoparticles prevent penetration of excitation light in deeper layers of the molten coating. This avoids curing of deep layers in the curing sample. Nevertheless, exposure with IR radiators results in high conversions of cured powder resin even if nanoparticles were embedded. Such treatment also gives the possibility for simultaneous melting and spread- ing of the powder coating on the substrate resulting in a solidified film nearly by one process step. This new procedure demonstrates the facile integration of nanoparticles with plasmon resonance in the visible region into the solidified and filmed powder coating.
机译:通过将前聚合物与包含四氢呋喃或三氯乙烯的胶体混合在一起,将金纳米颗粒整合到乳酸聚酯/乙烯基尿素粉末涂层中,作为连续相。这种浆液被挤出,导致树脂中纳米颗粒的均匀分布。粉末涂层的固化是通过接近红外(NIR)光聚合进行的。引发剂系统包括己氨酸氰氨酸吸收剂S2265和Bis-(4-(t叔丁基) - 苯基)碘二氧化碳(三氟甲基磺酰基)作为激进的启动剂。由于发射强度较低,将NIR领导的阵列用作粉末涂层的光源进行光源。另外,纳米颗粒的吸收和散射可防止激发光在熔融涂层的较深层中渗透。这避免了固化样品中深层的固化。然而,即使嵌入了纳米颗粒,与IR辐射器的暴露也会导致固化粉末树脂的高转化。这种治疗方法还可以使粉末涂层同时在基材上融化和散布,从而几乎通过一个过程步骤产生固化膜。这一新程序证明了纳米颗粒与可见区域中的等离子体共振的便利整合到凝固的粉末涂料中。

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