Shape-programmed folding of stimuli-responsive polymer bilayers G Stoychev, S Zakharchenko, S Turcaud, JWC Dunlop, L Ionov ACS nano 6 (5), 3925-3934, 2012 | 293 | 2012 |
Hierarchical multi‐step folding of polymer bilayers G Stoychev, S Turcaud, JWC Dunlop, L Ionov Advanced Functional Materials 23 (18), 2295-2300, 2013 | 180 | 2013 |
Hole‐programmed superfast multistep folding of hydrogel bilayers G Stoychev, L Guiducci, S Turcaud, JWC Dunlop, L Ionov Advanced Functional Materials 26 (42), 7733-7739, 2016 | 94 | 2016 |
An excursion into the design space of biomimetic architectured biphasic actuators S Turcaud, L Guiducci, P Fratzl, YJM Bréchet, JWC Dunlop International Journal of Materials Research 102 (6), 607-612, 2011 | 42 | 2011 |
Honeycomb actuators inspired by the unfolding of ice plant seed capsules L Guiducci, K Razghandi, L Bertinetti, S Turcaud, M Rüggeberg, ... PloS one 11 (11), e0163506, 2016 | 40 | 2016 |
Hydro‐Actuated Plant Devices K Razghandi, S Turcaud, I Burgert Nonlinear Elasticity and Hysteresis: Fluid‐Solid Coupling in Porous Media …, 2014 | 10 | 2014 |
Some patterns of shape change controlled by eigenstrain architectures S Turcaud Université Grenoble Alpes, 2015 | 5 | 2015 |
Twisters: an analogy of bilayers for twisting S Turcaud, A Thorin, Y Bréchet, P Fratzl, JWC Dunlop Journal of the Mechanics and Physics of Solids 134, 103742, 2020 | 3 | 2020 |
Featuring steel: Resources, architecture, reflections A Bruno, M Davies, M Feldmann, F Mazzolani, G O'Sullivan, F Rambert, ... Featuring Steel, 2009 | 1 | 2009 |
Motifs de changement de forme contrôlés par des architectures de gonflement| Theses. fr S Turcaud Université Grenoble Alpes (ComUE), 2015 | | 2015 |
Some design principles of biomimetic actuators S Turcaud, L Guiducci, P Fratzl, YJM Bréchet, JWC Dunlop Book of Abstracts, 27, 2011 | | 2011 |
Geometrical solutions of soap bubble clusters D Demin, S Turcaud Design Modeling Symposium Berlin, 2009 | | 2009 |