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Bionic Functional Structures by Femtosecond Laser Micro/nanofabrication Technologies Softcover Reprint of the Original 1st 2018 ed. [Mīkstie vāki]

  • Formāts: Paperback / softback, 128 pages, height x width: 235x155 mm, weight: 454 g, 84 Illustrations, color; 31 Illustrations, black and white; XV, 128 p. 115 illus., 84 illus. in color., 1 Paperback / softback
  • Sērija : Springer Theses
  • Izdošanas datums: 04-Jan-2019
  • Izdevniecība: Springer Verlag, Singapore
  • ISBN-10: 9811343950
  • ISBN-13: 9789811343957
Citas grāmatas par šo tēmu:
  • Mīkstie vāki
  • Cena: 91,53 €*
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  • Standarta cena: 107,69 €
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  • Formāts: Paperback / softback, 128 pages, height x width: 235x155 mm, weight: 454 g, 84 Illustrations, color; 31 Illustrations, black and white; XV, 128 p. 115 illus., 84 illus. in color., 1 Paperback / softback
  • Sērija : Springer Theses
  • Izdošanas datums: 04-Jan-2019
  • Izdevniecība: Springer Verlag, Singapore
  • ISBN-10: 9811343950
  • ISBN-13: 9789811343957
Citas grāmatas par šo tēmu:

This thesis combines advanced femtosecond laser micro/nanofabrication technologies and frontier bionic design principles to prepare diverse biomimetic micro/nanostructures to realize their functions. By studying the formation mechanism of the micro/nanostructures, the author identifies various artificial structural colors, three-dimensional micro/nanocage arrays, and fish-scale inspired microcone arrays in different processing environments. Multiple functions such as enhanced antireflection, hydrophobicity, and underwater superoleophobicity are achieved by precisely adjusting laser-machining parameters. This novel design and method have extensive potential applications in the context of new colorizing technologies, microfluidics, microsensors, and biomedicine.

Introduction.- Key technological of bionic structure surfaces induced by
femtosecond laser.- Bionic structure induced by femtosecond laser.- PDMS
surface wetting based on metal template by femtosecond
laser.- Three-dimensional porous metal micro/nano cage structure by
femtosecond laser with ethanol assisted.- Superhydrophilic/ underwater
superoleophobic microcone arrays by sucrose solution assisted femtosecond
laser.- Conclusion and Outlook.
Previous degrees:

June 2011 South University of Science and Technology, China

                    M.S., Physics, major field in laser micro/nanofabrication

June 2008 South University of Science and Technology, China

               B.S., Optical Information Science and Technology, major field in laser principles & technology



Area of work:







Femtosecond laser interactions with materials.

Femtosecond laser micro/nanofabrication.

Bio-inspired function structures and their applications.

Honors:

First-class scholarship offered by China Aerospace Science and Technology Corporation, (2014).

Chinese Academy of Sciences Dean Awarding offered by Chinese Academy of Sciences, (2015).





Excellent Doctoral Dissertations offered by Chinese Academy of Sciences, (2016).