Guo Ran, Yan Gaige, Niu Weilong, Li Xuan
School of Mechanical and Electrical Engineering, Soochow University, Suzhou, Jiangsu, 215137, People's Republic of China.
Innovision Technology (Suzhou) Co., Ltd, Suzhou, Jiangsu, 215000, People's Republic of China.
Nanotechnology. 2024 Apr 4;35(25). doi: 10.1088/1361-6528/ad3252.
Electrohydrodynamic-jet printing (E-jet printing) is a direct-writing technology for manufacturing micro-nano devices. To further reduce the inner diameter of the nozzle to improve the printing resolution, a large-scale manufacturing method of SU-8 polymer micro/nanoscale nozzle by means of a process combining UV exposure and hot embossing was proposed. To improve the adhesive strength between the UV mask and SU-8, the influence of the oxygen plasma treatment parameters on the water contact angles of the UV mask was analyzed. The effect of hot embossing time and temperature on the replication precision was studied. The influence of UV exposure parameters and thermal bonding parameters on the micro and nanochannel pattern was investigated. The SU-8 polymer nozzles with 188 ± 3 nm wide and 104 ± 2 nm deep nanochannels were successfully fabricated, and the replication precision can reach to 98.5%. The proposed manufacturing method of SU-8 polymer nozzles in this study will significantly advance the research on the transport properties of nanoscale channels in E-jet nozzles and facilitate further advancements in E-jet based applications.
电流体动力喷射打印(E-jet打印)是一种用于制造微纳器件的直接写入技术。为了进一步减小喷嘴内径以提高打印分辨率,提出了一种通过紫外线曝光和热压印相结合的工艺来大规模制造SU-8聚合物微纳级喷嘴的方法。为了提高紫外线掩膜与SU-8之间的粘合强度,分析了氧等离子体处理参数对紫外线掩膜水接触角的影响。研究了热压印时间和温度对复制精度的影响。研究了紫外线曝光参数和热键合参数对微纳通道图案的影响。成功制造出了具有宽188±3nm、深104±2nm纳米通道的SU-8聚合物喷嘴,其复制精度可达98.5%。本研究中提出的SU-8聚合物喷嘴制造方法将显著推动对E-jet喷嘴中纳米级通道传输特性的研究,并促进基于E-jet的应用的进一步发展。