Page 79 - Read Online
P. 79
Villeda-Hernandez et al. Soft Sci 2024;4:14 https://dx.doi.org/10.20517/ss.2023.52 Page 35 of 35
IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS); 2015 Sep 28 - Oct 2; Hamburg, Germany. IEEE;
2015. pp. 3888-93. DOI
151. Girabawe C, Fraden S. An image-driven drop-on-demand system. Sens Actuators B Chem 2017;238:532-9. DOI
152. Sitti M, Ceylan H, Hu W, et al. Biomedical applications of untethered mobile milli/microrobots. Proc IEEE Inst Electr Electron Eng
2015;103:205-24. DOI PubMed PMC
153. Kim S, Laschi C, Trimmer B. Soft robotics: a bioinspired evolution in robotics. Trends Biotechnol 2013;31:287-94. DOI PubMed
154. Zhang C, Zhu P, Lin Y, Jiao Z, Zou J. Modular soft robotics: modular units, connection mechanisms, and applications. Adv Intell Syst
2020;2:1900166. DOI
155. Arnaboldi S, Salinas G, Bichon S, Gounel S, Mano N, Kuhn A. Bi-enzymatic chemo-mechanical feedback loop for continuous self-
sustained actuation of conducting polymers. Nat Commun 2023;14:6390. DOI PubMed PMC
156. Yang X, Chang L, Pérez-Arancibia NO. An 88-milligram insect-scale autonomous crawling robot driven by a catalytic artificial
muscle. Sci Robot 2020;5:eaba0015. DOI PubMed
157. Chen S, Cao Y, Sarparast M, et al. Soft crawling robots: design, actuation, and locomotion. Adv Mater Technol 2020;5:1900837.
DOI
158. Sarikaya S, Gardea F, Auletta JT, et al. Fuel-driven redox reactions in electrolyte-free polymer actuators for soft robotics. ACS Appl
Mater Interfaces 2023;15:31803-11. DOI PubMed PMC
159. Mangadlao JD, Xu H, Baer E, Advincula RC. In situ photogeneration of palladium nanoparticles in thermoplastic polyurethane:
photopatterning and enhanced oxygen barrier property. Macro Chem Phys 2017;218:1700289. DOI
160. Storck S, Bretinger H, Maier WF. Characterization of micro- and mesoporous solids by physisorption methods and pore-size analysis.
Appl Catal A Gen 1998;174:137-46. DOI
161. Furukawa H, Cordova KE, O’Keeffe M, Yaghi OM. The chemistry and applications of metal-organic frameworks. Science
2013;341:1230444. DOI
162. Kelly JA, Giese M, Shopsowitz KE, Hamad WY, MacLachlan MJ. The development of chiral nematic mesoporous materials. Acc
Chem Res 2014;47:1088-96. DOI PubMed
163. Wang H, Yuan X, Wu Y, et al. Synthesis and applications of novel graphitic carbon nitride/metal-organic frameworks mesoporous
photocatalyst for dyes removal. Appl Catal B Environ 2015;174-5:445-54. DOI
164. Narzary BB, Baker BC, Yadav N, D’elia V, Faul CFJ. Crosslinked porous polyimides: structure, properties and applications. Polym
Chem 2021;12:6494-514. DOI
165. Narzary BB, Baker BC, Faul CFJ. Selective CO electroreduction from tuneable naphthalene-based porous polyimide networks. Adv
2
Mater 2023;35:e2211795. DOI PubMed
166. Giri N, Del Pópolo MG, Melaugh G, et al. Liquids with permanent porosity. Nature 2015;527:216-20. DOI
167. Fulvio PF, Dai S. Porous liquids: the next frontier. Chem 2020;6:3263-87. DOI
168. Gronnow MJ, White RJ, Clark JH, Macquarrie DJ. Energy efficiency in chemical reactions: a comparative study of different reaction
techniques. Org Process Res Dev 2005;9:516-8. DOI
169. Xavier MS, Tawk CD, Zolfagharian A, et al. Soft pneumatic actuators: a review of design, fabrication, modeling, sensing, control and
applications. IEEE Access 2022;10:59442-85. DOI
170. Dezaki M, Bodaghi M, Serjouei A, Afazov S, Zolfagharian A. Soft pneumatic actuators with controllable stiffness by bio-inspired
lattice chambers and fused deposition modeling 3D printing. Adv Eng Mater 2023;25:2200797. DOI
171. Yadav T, Mishra G. Insect toxins and their bioprospecting. In: Omkar, editor. Insects as service providers. Singapore: Springer; 2023.
pp. 131-62. DOI
172. Arndt EM, Moore W, Lee WK, Ortiz C. Biomechanics. Mechanistic origins of bombardier beetle (Brachinini) explosion-induced
defensive spray pulsation. Science 2015;348:563-7. DOI PubMed
173. Terryn S, Brancart J, Lefeber D, Van Assche G, Vanderborght B. Self-healing soft pneumatic robots. Sci Robot 2017;2:eaan4268.
DOI PubMed

