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Titlebook: Electrohydrodynamic Direct-Writing for Flexible Electronic Manufacturing; Zhouping Yin,Yongan Huang,Haitao Zhang Book 2018 Springer Nature

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Helix Electrohydrodynamic Printing (HE-Printing),r and the size changing rules for various deposited microstructures, and highly aligned serpentine microfibers were directly written by controlling the applied voltage, nozzle-to-collector distance and substrate velocity, demonstrating the potential of HE-Printing in stretchable electronics manufacturing.
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Inks for EHD Printing,s viscosity and surface tension. This chapter has summarized the general classification of inks in EHD printing (inorganic inks, organic inks and composite inks), their latest developments and applications, and the evaluation of their printing performance (viscosity, conductivity and surface tension), hoping it will be helpful for preparing inks.
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Ulrike Röttger,Patrick Donges,Ansgar Zerfaßea. This technique shows a great potential in the fabrication of high performance organic electronics such as organic field-effect transistors, stretchable sensors, stretchable energy harvesters and touch screens, in a cost-effective and ingenious nanomanufacturing.
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Nozzles for EHD Printing,y with high printing resolution and efficiency. To further improve the printing flexibility of the Si-nozzle array, we present a multiple voltage method to achieve the addressable multi-nozzle printing. These could provide many choices to design more practical nozzles for applications in industries.
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