论文标题
高色纯度的光致变色纳米甲甲基甲甲基甲烷的需求激活3D打印
On-Demand Activation of Photochromic Nanoheaters for High Color Purity 3D Printing
论文作者
论文摘要
目前,通过在印刷过程中使用的热敏化剂的变色来限制,通过粉末烧结过程的白色和彩色3D打印物体的创建具有高颜色保真度。在这里,我们通过使用可切换的光致变色钨氧化物纳米颗粒来解决这个问题,即使在高浓度下也无色。紫外线照明后,可以可逆地激活氧化二氧化碳纳米颗粒,从而使其在红外线中高度吸收。激活后,它们强烈的红外吸收使它们有效的光热敏化剂可以充当基于烧结的3D打印中聚合物粉末的融合剂。 WO3纳米颗粒显示快速激活时间,当与聚酰胺粉末混合时,它们表现出的供热与彩色变化比大大超过了文献中其他敏化剂。与彩色油墨混合后,包含WO3的粉末显示与原始粉末相同的色。这证明了WO3的潜力和光致变色纳米颗粒,这是一种新的高级制造材料。
The creation of white and multicoloured 3D-printed objects with high colour fidelity via powder sintering processes is currently limited by discolouration from thermal sensitizers used in the printing process. Here we circumvent this problem by using switchable, photochromic tungsten oxide nanoparticles, which are colourless even at high concentrations. Upon ultraviolet illumination, the tungsten oxide nanoparticles can be reversibly activated making them highly absorbing in the infrared. Their strong infrared absorption upon activation renders them efficient photothermal sensitizers that can act as fusing agents for polymer powders in sintering-based 3D printing. The WO3 nanoparticles show fast activation times, and when mixed with polyamide powders they exhibit a heating-to-colour-change ratio greatly exceeding other sensitizers in the literature. Upon mixing with coloured inks, powders containing WO3 display identical colouration to a pristine powder. This demonstrates the potential of WO3, and photochromic nanoparticles in general as a new class of material for advanced manufacturing.