By Antonella Macagnano, Emiliano Zampetti, Erich Kny
This ebook goals to provide different elements of electrospinning for designing and fabricating excessive appearing fabrics for sensors utilized in gaseous and liquid environments. considering electrospinning is a flexible and cheap production expertise, the publication emphasizes the economic functions standpoint. the quantity is an edited number of the latest and inspiring effects relating complex nanostructured (bio) sensors. The feats completed by means of those sensors diversity from excessive sensitivity to severe working stipulations and fulfill a variety of specifications. many of the contributions during this e-book come from First overseas Workshop on Electrospinning for prime functionality Sensing (EHPS2014) that used to be held in Rome in 2014, as a part of the ecu fee motion MP1206 Electrospun Nanofibres for bio encouraged composite fabrics and cutting edge business applications.
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Additional resources for Electrospinning for High Performance Sensors
Chen, R. 7)O3 nanofibers. Microelectron. Eng. 98(0), 371–373 (2012). 026 54. L. J. A. Kinloch, Y. J. Eichhorn, Carbon nanofibres produced from electrospun cellulose nanofibres. Carbon 58(0), 66–75 (2013). 032 55. H. K. Mahanta, B. Wang, S. R. Abramson, M. Cakmak, Structural evolution in graphitization of nanofibers and mats from electrospun polyimide–mesophase pitch blends. Carbon 71(0), 303–318 (2014). 057 56. Y. Si, T. Ren, Y. Li, B. Ding, J. Yu, Fabrication of magnetic polybenzoxazine-based carbon nanofibers with Fe3O4 inclusions with a hierarchical porous structure for water treatment.
25–3 μm (major in micropore range) within the film. Unlike NFN membranes, the nanofibers overlap each other in a completely random manner during electrospinning procedure, giving a rise to the silt-shape pore structure which is ideal for membranes binding BAu probe. 4 Summary and Perspectives In summary, this chapter presents a comprehensive review of the progress in QCM and colorimetric sensors based on electrospinning-netting nanofibers/nets. In virtue of the large surface-area-to-volume ratio, high length-to-diameter ratio, tailored pore structure, large stacking density, nanofiber-based sensors achieved high sensitivity, fast response and recovery, excellent stability.
Benefiting to several attractive features of NFN membranes such as extremely large specific surface area, high porosity, large stacking density and strongly tight adhesive force to the devices, it can lead to further enhancement in the facilitation of the analytes diffusion and oscillation transmission into the membranes, so as to detect formaldehyde at lower concentration level . Recently, an effective formaldehyde detection system was developed by ESN depositing PA-6 NFN membranes on QCM and then modifying sensing PEI onto the NFN membranes (PEI@PA-6).
Electrospinning for High Performance Sensors by Antonella Macagnano, Emiliano Zampetti, Erich Kny