Vainos Nikolaos A, Bagiokis Eleftherios, Karoutsos Vagelis, Hou Jingshan, Liu Yufeng, Zou Jun, Fang Yongzheng, Papachristopoulou Konstantina, Lorusso Antonella, Caricato Anna Paola, Perrone Alessio
Department of Materials Science, University of Patras, 26504 Patras, Greece.
National Hellenic Research Foundation-TPCI, 48 Vass. Constantinou Ave., 11635 Athens, Greece.
Nanomaterials (Basel). 2020 Dec 25;11(1):35. doi: 10.3390/nano11010035.
Pulsed laser deposition on 3-dimensional micro-objects of complex morphology is demonstrated by the paradigmatic growth of cellulose and polymer/YAlO:Ce phosphor composite nanolayers. Congruent materials transfer is a result of multicomponent ablation performed by relatively low fluence (<200 mJ cm) ArF excimer laser pulses (λ = 193 nm). Films grown on optical and engineering components, having a thickness from ~50 nm to more than ~300 nm, are durable, well adherent and maintain the structural and functional properties of the parent solids. The results verify the unique capabilities of deep-ultraviolet pulsed laser deposition of novel functional nanostructures on arbitrary surface morphologies and highlight its potential in future 3-dimensional nanotechnologies.
通过纤维素和聚合物/YAlO:Ce磷光体复合纳米层的典型生长,证明了在复杂形态的三维微物体上进行脉冲激光沉积。成分匹配的材料转移是由相对低能量密度(<200 mJ/cm²)的ArF准分子激光脉冲(λ = 193 nm)进行多组分烧蚀的结果。在光学和工程部件上生长的薄膜,厚度从约50 nm到超过约300 nm,具有耐久性、良好的附着力,并保持母体固体的结构和功能特性。结果验证了深紫外脉冲激光沉积在任意表面形态上制备新型功能纳米结构的独特能力,并突出了其在未来三维纳米技术中的潜力。