By exploiting microfluidic tools, we showed the reaction-diffusion (RD) controlled growth of customized magnetic soft continuum robots (mSCRs) and their transformation into smaller robotic units. L. Hertle, @PuigmartiLuis, @hpdnelson, @PaneSalvador et al. https://t.co/YzldgQOYbR
Can we utilize electric fields as a smart
reagent to catalyze chemical processes over a large electrode surface? Check out our new paper in @NatureComms Here: https://t.co/Pwp3udi51v
@PaneSalvador@IsmaelDezPrez1@PuigmartiLuis
Two positions (1 postdoc + 1 PhD) open for an snf project on nanoscale ferroelectrics at the Multi-Scale Robotics Lab, ETH Zürich. Candidates should send a CV and a motivation letter to [email protected] & [email protected]. Experience in physical deposition techniques is required.
This tiny microrobot is made of 2D-MoS2, which can transform light into heat.
@PaneSalvador and team show their promising application in photothermal cancer therapies and molecular biorecognition.
Find out more: https://t.co/oYp4c49OSD
Happy to see our work on magnetoelectric generation of hydrogen highlighted on the front cover of Advanced Materials by D Kim, X Chen, @ChiaraGattinoni @ipekkefee@NicolaSpaldin @BradNel15399711 @PuigmartiLuis et al! @eth_dmavt https://t.co/xjdiUeQiTg
Very happy to see this work finally out in @NatureComms. It took us sometime to understand how secondary flows could trigger chiral symmetry breaking processes, but here it is DOI 10.1038/s41467-022-29425-y. Credit goes to @semihsevim_ , @joaopvale, ASorrenti, @PaneSalvador
Nice to see this lovely collaboration out. "Biotemplating of MOFs Nanocrystals for Applications in Small-Scale Robotics". Congrats to everyone!
@PuigmartiLuis@PaneSalvador@FuniMat@PumeraGroup
https://t.co/7wWJfklgly
Meet MOFBOT! A small swimmer made by biotemplating metal–organic framework (MOF) nanocrystals onto magnetic helical structures provided by cyanobacterium.
@PaneSalvador@ETH_en@PuigmartiLuis@UniBarcelona@PumeraGroup
Read the paper: https://t.co/izwQjcg6Tx
Great collaboration of the Multi-Scale Robotics Lab with Chem-in-flow Lab, @FuniMat, @deMelloGroup and @PumeraGroup : "Biotemplating of MOFs Nanocrystals for Applications in Small-Scale Robotics", by Terzopoulou et al. @PuigmartiLuis https://t.co/zkWHM620JL #MOFs#microrobots
Our paper "A Submillimeter Continuous Variable Stiffness Catheter for Compliance Control" highlighted as frontispice in Advance Science https://t.co/D9UGSmfzae. Thanks, A. Bago for the great illustration! J. Lussi, Q. Bohler, @BradNel15399711, @semihsevim_ ,@PuigmartiLuis et al.
A catheter that can change its rigidity on demand can be safely navigated in its soft state and stiffened when needed to apply force at its tip https://t.co/f0eAfXwJ8M
The custom microfluidic devices reported in this paper simulate microgravity, allowing crack-free growth of 2D porous crystalline molecular frameworks
@PaneSalvador@PuigmartiLuis
Read the article: https://t.co/rL677rNq4t
Happy to share our art work that was finally selected as front cover in Advanced Materials. In collaboration with @nanosfun, @PaneSalvador, @joaopvale@icmabCSIC. Thanks to @ERC_Research@snsf_ch
https://t.co/Ivd3pRYXCt
Very nice cover for a very nice work! Congrats to all! “2D Materials: Synthesis of 2D Porous Crystalline Materials in Simulated Microgravity (Adv. Mater. 30/2021)” https://t.co/fdCUPO39K4
Our paper “A Submillimeter Continuous Variable Stiffness Catheter for Compliance Control” is now published in Advanced Science. J. Lussi, M. Mattmann, Semih Sevim, Q. Boehler, C. Chautems, @PuigmartiLuis @BradNel15399711 et al.
@eth_dmavt@IQTCUB@ETH_en