This chapter is designed to be a comprehensive source for nanofibers reinforced polymer studies. The fundamental properties, manufacturing techniques, and applications of nanofibers reinforced polymer materials are discussed. In addition, this chapter introduce an in depth scientific framework for the advances in nanofibers reinforced polymer researches as well as scientific principles and mechanisms in relation to the methods of fabrication of reinforced microstructuring with a discussion on potential commercial applications. The mechanical, electrical, and magnetic properties of nanofibers reinforced polymer microstructures will be the focus of this chapter. It also offers an in depth discussion on methodology, modeling, characterization, fabrication, and applications for nanofibers reinforced polymers.
In this study, we report a new phenomenon of multiphoton polymerization induced by dual wavelength irradiation with femtosecond laser of 515 and 1030 nm. We demonstrated a spatial resolution of 1200 nm from a laser spot of 1020 nm diameter. This is a significant increase in the spatial resolution of about 33 and 58% than the two photon absorption (2PA) and the three photon absorption (3PA) processes, respectively. This increase is a direct result of the significant reduction in the "Blurry" effect that is caused by continuous photochemical reaction beyond the targeted area. This phenomenon may allow the fabrications of two-dimensional and three-dimensional components of very high resolution.
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