4.4 Article

Fabrication and evaluation of controllable deposition distance for aligned pattern by multi-nozzle near-field electrospinning

期刊

AIP ADVANCES
卷 8, 期 7, 页码 -

出版社

AMER INST PHYSICS
DOI: 10.1063/1.5032082

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资金

  1. Key Project of Science and Technology of Guangdong Province, China [2015B010124001]
  2. Project of Science and Technology of Guangdong Province [2017B090911012, 2015B090921007, 2015B010102014]
  3. Guangdong Innovative Research Team Program [2014ZT05G157]
  4. Project of Science and Technology of Foshan City [2015IT100152]
  5. Applied Science and Technology Development Foundation of Guangdong [2015B090921007]
  6. Guangdong Provincial Natural Science Foundation [2015A030312008]
  7. Key Project of Science and Technology of Guangdong Province: Study of super-resolution CT-US-4D guided system, Training program for outstanding young teachers in higher education institutions of Guangdong Province [YQ2015056]
  8. Guangdong High-level Personnel of Special Support Program (Outstanding young scholar in science and technology innovation) [2014TQ01X212]
  9. Project of Public Welfare Research of Guangdong Province [2015B010104006]
  10. University Innovation and Entrepreneurship Education Major Project of Guangzhou City [201709P05]
  11. Science and Technology Planning Project of Guangzhou City of China [201604016084]

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To mass-volume fabricate micro- and nano-scales aligned pattern, multi-nozzle near-field electrospinning (NFES) direct-writing technology is well proposed as a high-efficiency method in electrohydrodynamic (EHD) printing process. However, the interference effect among adjacent nozzles and coupling effect of various parameters have restricted to investigate deposition characteristic of multi-nozzle NFES and control EHD multi-jet deposition accuracy. In order to improve the accuracy of EHD multi-jet deposition with high-efficiency printing process, the experimental result compared with theoretical method were discussed. In this work, the influence of multi-nozzle geometry distribution and electrospinning parameters on deposition characteristic was studied with multi-nozzle NFES setup, and nozzles were in linear array. The deposition distance and homogeneity of aligned nanofibers were measured and explained with coefficient of dispersion on electric field among nozzles by simulation. Moreover, deposition distance of multi-nozzle NFES process was evaluated by modified theoretical derivation based on our previous studies. The modified theoretical derivation showed a good agreement with experiment results, and indicated that multi-nozzle NFES could accurately and efficiently direct-write aligned array pattern in future. (c) 2018 Author(s).

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