Plant‐Inspired Soft Bistable Structures Based on Hygroscopic Electrospun Nanofibers
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Matteo Cianchetti | Barbara Mazzolai | Edoardo Sinibaldi | Carlo Filippeschi | Dario Lunni | M. Cianchetti | B. Mazzolai | E. Sinibaldi | C. Filippeschi | Dario Lunni
[1] M. Sitti,et al. Soft Actuators for Small‐Scale Robotics , 2017, Advanced materials.
[2] S. Ekgasit,et al. Elastomeric PDMS Planoconvex Lenses Fabricated by a Confined Sessile Drop Technique. , 2016, ACS applied materials & interfaces.
[3] Elisabeth Smela,et al. Characterization and modeling of PPy bilayer microactuators Part 1. Curvature , 2006 .
[4] Arri Priimagi,et al. A light-driven artificial flytrap , 2017, Nature Communications.
[5] J. Dumais,et al. Explosive dispersal and self-burial in the seeds of the filaree, ERodium cicutarium (Geraniaceae) , 2013 .
[6] T. Okano,et al. Comb-type grafted hydrogels with rapid deswelling response to temperature changes , 1995, Nature.
[7] A. DeSimone,et al. Spontaneous morphing of equibiaxially pre-stretched elastic bilayers: The role of sample geometry , 2017, International Journal of Mechanical Sciences.
[8] Peter deVoil,et al. The role of root architectural traits in adaptation of wheat to water-limited environments. , 2006, Functional plant biology : FPB.
[9] Robert Langer,et al. Bio-Inspired Polymer Composite Actuator and Generator Driven by Water Gradients , 2013, Science.
[10] Simon Poppinga,et al. Different mechanics of snap-trapping in the two closely related carnivorous plants Dionaea muscipula and Aldrovanda vesiculosa. , 2011, Physical review. E, Statistical, nonlinear, and soft matter physics.
[11] R. Elbaum,et al. Quantification of microfibril angle in secondary cell walls at subcellular resolution by means of polarized light microscopy. , 2013, The New phytologist.
[12] L. Mahadevan,et al. Bacillus spores as building blocks for stimuli-responsive materials and nanogenerators. , 2014, Nature nanotechnology.
[13] Y. Semenova,et al. Improving the sensitivity of a humidity sensor based on fiber bend coated with a hygroscopic coating , 2011 .
[14] Howon Lee,et al. First jump of microgel; actuation speed enhancement by elastic instability , 2010, 1008.4078.
[15] Barbara Mazzolai,et al. A variable-stiffness tendril-like soft robot based on reversible osmotic actuation , 2019, Nature Communications.
[16] L. Mahadevan,et al. Physical Limits and Design Principles for Plant and Fungal Movements , 2005, Science.
[17] L. Mahadevan,et al. Hygromorphs: from pine cones to biomimetic bilayers , 2009, Journal of The Royal Society Interface.
[18] Huiqi Shao,et al. Snapping of bistable, prestressed cylindrical shells , 2018, EPL (Europhysics Letters).
[19] Matthew L. Smith,et al. Contactless, photoinitiated snap-through in azobenzene-functionalized polymers , 2013, Proceedings of the National Academy of Sciences.
[20] Pierre Gentine,et al. Potential for natural evaporation as a reliable renewable energy resource , 2017, Nature Communications.
[21] B. Mazzolai,et al. Toward a New Generation of Electrically Controllable Hygromorphic Soft Actuators , 2015, Advanced materials.
[22] S. Timoshenko,et al. Analysis of Bi-Metal Thermostats , 1925 .
[23] L. Mahadevan,et al. How the Venus flytrap snaps , 2005, Nature.
[24] Lakshminarayanan Mahadevan,et al. How wet paper curls , 2011 .
[25] Shaobing Zhou,et al. Highly pH-sensitive polyurethane exhibiting shape memory and drug release , 2014 .
[26] Kyu-Jin Cho,et al. Hygrobot: A self-locomotive ratcheted actuator powered by environmental humidity , 2018, Science Robotics.
[27] K. Oda,et al. Action potential and rapid movement in the main pulvinus ofMimosa pudica , 1972, The botanical magazine = Shokubutsu-gaku-zasshi.
[28] R. Kupferman,et al. Geometry and Mechanics in the Opening of Chiral Seed Pods , 2011, Science.
[29] Ajay Agarwal,et al. Evaluation of bonding between oxygen plasma treated polydimethyl siloxane and passivated silicon , 2006 .
[30] R. Elbaum,et al. The Role of Wheat Awns in the Seed Dispersal Unit , 2007, Science.
[31] Hongzhi Wang,et al. Origami-inspired active graphene-based paper for programmable instant self-folding walking devices , 2015, Science Advances.