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Applications of DuPont photopolymer Cromalin(R) for dry deposition of particles.

机译:杜邦光敏聚合物Cromalin(R)在干法沉积颗粒中的应用。

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A dry deposition method for patterning particles for specific applications of emissive display screens, photocatalysts and nanoparticles, using DuPont Tacky DotRTM photopolymer, was developed. This tacky photopolymer, CromalinRTM, may be adhered to various substrates and patterned through the polymerization of the adhesive when exposed to UV light. It was found that CromalinRTM is activated at a wavelength of 340--370 nm and has a patterning resolution as measured by the USAF 1951 resolution target to be ∼20 mum. Phosphor, alumina, titania, toner and various types of nanometer-sized materials, including carbon nanotubes, mesoporous silica nanoparticles, silver nanowires and magnetic magnetite nanoparticles were adhered to Positive CromalinRTM. These particles were shown to become adhered and embedded within the tacky photopolymer layer. Patterning of these nanomaterials was also found to be successful. Particle loading evaluations showed a monolayer of particles was adhered to the surface with an increase in deposit density and coverage when a layer of large diameter particles was followed by a layer of small diameter particles. A tape test showed the adhesion of particles to the surface is adequate (∼50 N) for the investigated applications and is dependent on particle shape. The decomposition properties of this adhesive material were evaluated to be suitable for emissive display screens and photocatalysis processes. The thermal degradation of the polymer in argon at 450°C was ∼83-86 wt.%. Adhesion increased with limited UV exposure and the solubility in water and acetone of Positive Cromalin RTM decreased.; Multiple adhesion mechanisms may contribute to the adhesion of various particle shapes and materials to Positive CromalinRTM. The elastic behavior of CromalinRTM allows particles to become completely or partially embedded into the photopolymer layer. This intimate contact allows surface forces, such as van der Waals, to act at the interface of the polymer and adhered particle. This elastic behavior also allows for a larger surface area of the particle to achieve contact, as it deforms around the particle and into cavities. The mechanical theory of adhesion plays a role as the embedded particles become trapped in the elastic polymer surface of Positive CromalinRTM which hardens through polymerization by UV activation.
机译:开发了一种干沉积方法,该方法使用杜邦Tacky DotRTM光敏聚合物为发射显示屏,光催化剂和纳米颗粒的特定应用构图颗粒。当暴露于紫外线下时,这种发粘的光敏聚合物CromalinRTM可以粘附到各种基材上并通过粘合剂的聚合而形成图案。发现CromalinRTM在340--370 nm的波长处被激活,并且具有图案分辨率(通过USAF 1951分辨率目标测得约为20微米)。磷光体,氧化铝,二氧化钛,碳粉和各种类型的纳米级材料(包括碳纳米管,中孔二氧化硅纳米颗粒,银纳米线和磁性磁铁矿纳米颗粒)均附着在Positive CromalinRTM上。这些颗粒显示出已粘附并嵌入到粘性光敏聚合物层中。这些纳米材料的图案化也被发现是成功的。颗粒负载评估显示,当一层大直径颗粒紧随其后是一层小直径颗粒时,单层颗粒附着到表面,沉积密度和覆盖率增加。胶带测试表明,对于所研究的应用,颗粒对表面的附着力足够(〜50 N),并且取决于颗粒的形状。评价该粘合剂材料的分解性能,以适合于发射显示屏和光催化过程。聚合物在氩气中在450℃下的热降解为〜83-86wt。%。在有限的紫外线照射下,附着力增加,正型Cromalin RTM在水和丙酮中​​的溶解度降低。多种粘附机制可能有助于将各种颗粒形状和材料粘附到Positive CromalinRTM。 CromalinRTM的弹性行为使颗粒完全或部分嵌入光敏聚合物层中。这种紧密接触允许表面力,例如范德华力,作用在聚合物和粘附的颗粒的界面上。这种弹性行为还允许粒子更大的表面积实现接触,因为它在粒子周围变形并进入空腔。粘附的机械原理起着一定的作用,因为嵌入的粒子被捕获在正性CromalinRTM的弹性聚合物表面中,该表面通过UV活化通过聚合而硬化。

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