Resultados globales: 3 registros encontrados en 0.03 segundos.
Artículos, Encontrados 3 registros
Artículos Encontrados 3 registros  
1.
9 p, 4.4 MB On-command disassembly of microrobotic superstructures for transport and delivery of magnetic micromachines / Landers, Fabian C. (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Gantenbein, Valentin (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Hertle, Lukas (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Veciana, Andrea (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Llacer-Wintle, Joaquin (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Chen, Xiang-Zhong (Fudan University. Yiwu Research Institute) ; Ye, Hao (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Franco, Carlos (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Puigmarti-Luis, Josep (Universitat de Barcelona. Institut de Química Teòrica i Computacional. Departament de Ciència dels Materials i Química Física) ; Kim, Minsoo (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Nelson, Bradley J. (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Pané i Vidal, Salvador (ETH Zürich. Institute of Robotics and Intelligent Systems)
Magnetic microrobots have been developed for navigating microscale environments by means of remote magnetic fields. However, limited propulsion speeds at small scales remain an issue in the maneuverability of these devices as magnetic force and torque are proportional to their magnetic volume. [...]
2023 - 10.1002/adma.202310084
Advanced materials, (December 2023) , art. 2310084  
2.
11 p, 3.6 MB The magnetopyroelectric effect : heat-mediated magnetoelectricity in magnetic nanoparticle-ferroelectric polymer composites / Llacer-Wintle, Joaquin (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Renz, Jan (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Hertle, Lukas (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Veciana, Andrea (ETH Zürich. Institute of Robotics and Intelligent Systems) ; von Arx, Denis (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Wu, Jiang (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Bruna, Pere (Universitat Politècnica de Catalunya. Departament de Física) ; Vukomanovic, Marija (Jožef Stefan Institute. Advanced Materials Department) ; Puigmarti-Luis, Josep (Institut de Química Teòrica i Computacional. Departament de Ciència dels Materials i Química Física) ; Nelson, Bradley J. (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Chen, Xiang-Zhong (ETH Zürich. Institute of Robotics and Intelligent Systems) ; Pané i Vidal, Salvador (ETH Zürich. Institute of Robotics and Intelligent Systems)
Magnetoelectricity enables a solid-state material to generate electricity under magnetic fields. Most magnetoelectric composites are developed through a strain-mediated route by coupling piezoelectric and magnetostrictive phases. [...]
2023 - 10.1039/d2mh01361d
Materials Horizons, Vol. 10, Issue 7 (April 2023) , p. 2627-2637  
3.
50 p, 1.3 MB Biodegradable small-scale swimmers for biomedical applications / Llacer-Wintle, Joaquin (ETH Zurich. Institute of Robotics and Intelligent Systems. Multi-Scale Robotics Lab) ; Rivas-Dapena, Antón (ETH Zurich. Institute of Robotics and Intelligent Systems. Multi-Scale Robotics Lab) ; Chen, Xiangzhong (ETH Zurich. Institute of Robotics and Intelligent Systems. Multi-Scale Robotics Lab) ; Pellicer Vilà, Eva Maria (Universitat Autònoma de Barcelona. Departament de Física) ; Nelson, Bradley J. (ETH Zurich. Institute of Robotics and Intelligent Systems. Multi-Scale Robotics Lab) ; Puigmartí-Luis, Josep (Institut de Química Teòrica i Computacional. Departament de Ciència dels Materials i Química Física) ; Pané i Vidal, Salvador (ETH Zurich. Institute of Robotics and Intelligent Systems. Multi-Scale Robotics Lab)
Most forms of biomatter are ephemeral, which means they transform or deteriorate after a certain time. From this perspective, implantable healthcare devices designed for temporary treatments should exhibit the ability to degrade and either blend in with healthy tissues, or be cleared from the body with minimal disruption after accomplishing their designated tasks. [...]
2021 - 10.1002/adma.202102049
Advanced materials, Vol. 33, Issue 42 (October 2021) , art. 2102049  

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