We work in: development of active polymeric materials, investigation of structure-property relationship and fabrication of new intelligent systems and devices.
Excited to share with you our latest publication❗️
We fabricated a highly sensitive #electrochemical_biosensor based on nanoparticles with grafted polymer brushes as enzyme carriers. Congratulations to 🧑🔬Synytska Lab for a great work
https://t.co/6Pv1Nv9Byj
Fresh from Japan's beautiful autumn, we're thrilled to share that two of our PhD students are presenting their posters at #Biofab2024! Their hard work is on display on the global stage, making us incredibly proud. Best of luck, Saskia and Waseem! #Biofabrication#FukuokaJapan
🚨Just Published! Our latest research in @ACS_AMI 🎓In this work, we developed flexible strain sensors by creating a fiber-reinforced, self-healing composite (MWCNT/PBS blends with electrospun fibers), enhancing sensitivity, stability, & durability!💡
Exciting news from us! We're pleased to announce a 3-year PhD position (TVL13) in Polymer/Materials Science, focusing on innovative engineered living materials (DFG-funded, SPP 2451). For more details, please see the attached information. Help us spread the word worldwide!
We are excited to announce that our published work on 4D #Biofabrication in @WileyGlobal's Advanced Materials Technologies has achieved a significant milestone by ranking in the top 10% of most downloaded papers. Check out Waseem's celebrated work at https://t.co/PBhi7EWYLQ!
Wrapping up the Spring Meeting of #EMRS2024 in Strasbourg! Proud of @PavelMilkin (Oral Session) and Prof. Dr. Leonid Ionov (Invited Speaker) for their outstanding contributions. Another milestone for our team, bridging fundamental research and technological innovation! #MatSci
Unfamiliar with photoorigami? Instead of folding paper, we use light-sensitive materials to fold into desired structures. Check out our latest publication on https://t.co/PwnE8s6EIJ and how this technique is harnessed in the fabrication of vascular connections through 4D printing
Our Press Release https://t.co/wdIWyXuIj2 is out, highlighting our latest work on hands-free 3D (bio)printing integrated touch-spinning https://t.co/5sDFU0TIae! This work investigates how bioink's rheological properties influence cell behavior along the fibers. Check us out!
Our Press Release https://t.co/wdIWyXuIj2 is out, highlighting our latest work on hands-free 3D (bio)printing integrated touch-spinning https://t.co/5sDFU0TIae! This work investigates how bioink's rheological properties influence cell behavior along the fibers. Check us out!
How much stress is needed for a soft #superelastic#conductive material to self-heal over time? Great news! It's our work @PavelMilkin on carbon altering the mechanical properties of #sillyputty and becomes conductive, bouncy, and self-healable. Read here: https://t.co/HmJhkEs2PV
November lights up with a happy Ionov Lab Day. It's never too late to wish Prof. Leonid Ionov a wonderful birthday! With our Half-time Game Master @PavelMilkin orchestrating exhilarating games, our pre-celebration culminated in meaningful camaraderie. Cheers for more years~! 🥰🎉
Check out our most recent #DLP printable #ink for the fabrication of intricate structures for #tissueengineering and #actuator applications! Let the ink flow by reading our recent #publication here https://t.co/xVBDriQ9kJ.
Fancy reading stimuli-responsive surfaces? Our #work on smart light-controlled valves in microfluidic devices by representing light-sensitive high-aspect ratio surfaces melt-electrowritten #SMP lamellae is now available at https://t.co/kTgQmCkQOC. Kudos @GisselaKte and her team!