🩸🤖 Our New paper out in @NatureComms!
Our Review explores artificial chemotaxis in micro/nanomotors — tiny machines that move using chemical signals, with future potential in medicine, sensing & water cleaning. 🌊💊🔬
Proud of Roshan & Sophie! 🚀
Link: https://t.co/zaFBAQWATs
🐮🌱 New in @NatRevElectrEng !
Flexible sensors for trees, animals & ecosystems. From smart plant sensors to animal wearables and marine tags, we explore how to listen to nature in real time.
🚀 Our 3rd @Nature-family paper in 6 months.
🗞️ Proud to share our new article on 🤖 microrobots and sensing of 🧨 explosives, “Molecularly Engineered Fluorescent Magnetic Microrobots for Sensing High-Energy Nitroaromatic Explosives in Highly Acidic Aqueous Environments.”
🧲 Published in Small (F12)
https://t.co/ask47vVsrn
See our review in @NatureFoodJnl on "Microrobots in food science and technology" https://t.co/1a4rpsMBgX
We:
🦀 summarize how autonomous functional microrobots can benefit food science and technology,
🍺 focus on applications in food safety control, preservation, and processing
🏆 Happy to share that our home institution, Brno University of Technology, has advanced in the QS World University Rankings to #575, #4 in Czech Rep. https://t.co/NMYpGLbk7B
Our new paper in #JACS (IF 15.7) introduces glucose-powered ultrasmall nanorobots that actively move through the vitreous and target the retina. A step toward targeted, noninvasive ocular therapy. See: https://t.co/CXjHSJxana
🗞️ New paper alert: #Flexible#Wearable#Electronics for 🩸#Biomedicine: 🤕 Band-aid-based 🩹 MoSe₂/Nb₂C wearable supercapacitor 🪫 for integrated ammonium-ion energy storage and real-time pressure monitoring 🩺 (J.Mater.Chem. A)
https://t.co/q451ClllOi
🚀 New article in Small Methods (IF 9) from our group on 💨Ammonia Sensor for 🦞 Food-Spoilage Monitoring based Laser-Assisted Mo₂C-Derived Patterned Oxide
in Small Methods
https://t.co/3mjMpDvNWz
Hydroelectric nanogenerators (HENGs) produce clean energy from water as a sustainable source, gaining attention. We make wonderful HENG from graphene oxide (published in @ChemCommun): https://t.co/0zHUN28xlV
🇪🇸 🇸🇮 🇨🇿 Today we held our online strategic planning and results-sharing workshop for our Spain–Slovenia–Czechia consortium within the https://t.co/d7Aqmwqc9A ANGSTROM project: “Advancing Supercapacitors with Plasma-designed Multifunctional Hybrid Materials.”
🌍 Tackling 💊 Microplastic Pollution with 🧲 Magnetic 🤖 Liquid Metal Microrobotics - Our latest publication: "Reconfigurable Self-Assembling Photocatalytic Magnetic Liquid Metal Microrobot Swarm for Microplastic Capture and Degradation" in Small (IF 13.
https://t.co/oAw8NMnVl2
🖼️Cover for our @acsnano article on Magnetic MicrobialMicrorobot swarms clean up plastic pollution! Wendesigned magnetically driven microrobots using living bacteria to capture micro- & nanoplastics from water @ACSPublications#MyACSCover 🔗 https://t.co/ldXAMpfMZ1
🎨#Cover in @acsnano (IF 16) - for our truly global effort—“Technology Roadmap of Micro/Nanorobots"
Article https://t.co/LM9TEtk1TR
Cover https://t.co/un27MkcFeH
🖼️Our new #Cover in @ACSCatalysis (IF 13) - for our article “ ⚛️ Single-Atom Engineering for Electrocatalysis: Fundamentals and Applications”
https://t.co/OfVOp4EXRZ
💫 Thrilled to share our review article, “Surface-Engineered 2D Nanomaterials in Gas Sensors: Advancement and Challenges,” now published in #Small (IF12), Wiley.
https://t.co/dFUS0tG8ro
https://t.co/xuxtQXgrwT
@HitszWang@acsnano Many many thanks for your participation in this project. Everyone did their share - it was the purpose to have collective wisdom from leading experts such yourself in it. Thank you again
🗺️ 🤖 “Technology Roadmap of Micro/Nanorobots” review has been published in @acsnano. This MEGA Review—authored by 103 researchers 🧑🔬 , spanning 161 📃 A4 pages, and citing 1,765 references—brings together leading groups from around the world. See https://t.co/LM9TEtk1TR
Sharing our latest review, “ ⚛️ Single Atom ⚙️ Engineering for 🔋 Electrocatalysis ⚗️ : Fundamentals and Applications.” 🇮🇹 🇨🇿 Over 40 pages of exciting reading with 300+ citations in @ACSCatalysis
https://t.co/V4KH12K16Y