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David Schiller
David Schiller
Soft Matter Physics, Johannes Kepler University Linz
Verified email at jku.at
Title
Cited by
Cited by
Year
Resilient yet entirely degradable gelatin-based biogels for soft robots and electronics
M Baumgartner, F Hartmann, M Drack, D Preninger, D Wirthl, R Gerstmayr, ...
Nature Materials 19 (10), 1102-1109, 2020
3142020
3D printing of resilient biogels for omnidirectional and exteroceptive soft actuators
A Heiden, D Preninger, L Lehner, M Baumgartner, M Drack, E Woritzka, ...
Science Robotics 7 (63), eabk2119, 2022
732022
Ultrafast small-scale soft electromagnetic robots
G Mao, D Schiller, D Danninger, B Hailegnaw, F Hartmann, T Stockinger, ...
Nature communications 13 (1), 4456, 2022
612022
Stretchable and biodegradable batteries with high energy and power density
M Karami‐Mosammam, D Danninger, D Schiller, M Kaltenbrunner
Advanced Materials 34 (32), 2204457, 2022
272022
Development of a Stretchable Battery Pack for Wearable Applications
D Schiller
submitted by David Schiller, BSc., Johannes Kepler University Linz 28, 2019
162019
Flexible quasi-2D perovskite solar cells with high specific power and improved stability for energy-autonomous drones
B Hailegnaw, S Demchyshyn, C Putz, LE Lehner, F Mayr, D Schiller, ...
Nature Energy, 1-14, 2024
2024
Direct Fabrication of Electronic Circuits on Wooden Surfaces
F Egger, D Schiller, T Stockinger, C Pretschuh, U Müller, M Kaltenbrunner
Advanced Sensor Research, 2400010, 2024
2024
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