Person: Glavan, Ana
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Publication Inkjet Printing of Conductive Inks with High Lateral Resolution on Omniphobic “R F Paper” for Paper-Based Electronics and MEMS
(Wiley-Blackwell, 2014) Lessing, Joshua; Glavan, Ana; Walker, S. Brett; Keplinger, Christoph; Lewis, Jennifer; Whitesides, GeorgeThe use of omniphobic “fluoroalkylated paper” as a substrate for inkjet printing of aqueous inks that are the precursors of electrically conductive patterns is described. By controlling the surface chemistry of the paper, it is possible to print high resolution, conductive patterns that remain conductive after folding and exposure to common solvents.
Publication Soft Actuators and Robots that Are Resistant to Mechanical Damage
(Wiley-Blackwell, 2014) Martinez, R; Glavan, Ana; Keplinger, Christoph; Oyetibo, Alexis I.; Whitesides, GeorgeThis paper characterizes the ability of soft pneumatic actuators and robots to resist mechanical insults that would irreversibly damage or destroy hard robotic systems—systems fabricated in metals and structural polymers, and actuated mechanically—of comparable sizes. The pneumatic networks that actuate these soft machines are formed by bonding two layers of elastomeric or polymeric materials that have different moduli on application of strain by pneumatic inflation; this difference in strain between an extensible top layer and an inextensible, strain-limiting, bottom layer causes the pneumatic network to expand anisotropically. While all the soft machines described here are, to some extent, more resistant to damage by compressive forces, blunt impacts, and severe bending than most corresponding hard systems, the composition of the strain-limiting layers confers on them very different tensile and compressive strengths.