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Max Planck Institute of Colloids & Interfaces (MPICI)

@mpici.bsky.social
2.3K followers 1.6K following 384 posts

Exploring the world of 'hidden dimensions': #colloids & #interfaces, and bridging the gap between molecules, multi-scale materials, and bio-systems. In Potsdam, Germany. www.mpikg.mpg.de #chemsky #Forschung #Research

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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 7h
Congratulations to Ana Karina Riaño for winning third place in the 2026 Applied Photonics Poster Award by the @dpgphysik.bsky.social for her poster presentation entitled “Inducing nematic defects in living photonic materials by topological confinement”! 🎉 #WomeninSTEM #Photonics #Physics
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 12h
Open Postdoc Position in bioinspired protein materials (@vignolinilab.bsky.social)! We are recruiting a Postdoc in biochemistry, material science and recombinant protein synthesis for this project: www.susmax.org/2026/02/12/p... Apply here until 31 October 2026: jobs.mpikg.mpg.de/jobposting/9...
Open Postdoc Position
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 29/09/2026
Under a microscope, biomolecular condensates look like tiny droplets. But what exactly is inside them? 🧫 A new paper in Advanced Science presents a label-free approach combining Raman spectroscopy and spectral phasor analysis to map the chemical composition of biomolecular condensates in situ. ⬇️⬇️

The picture shows first author Elias Sabri looking through a microscope in the lab. Using Raman spectroscopy, the research team can see the composition of tiny condensate droplets. Credit: MPIKG
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 28/09/2026
Lithium is an important raw material, but extracting it from natural solutions involves complex separation processes. An international research team was able to use light and an electric voltage to control which ions pass through a membrane. ➡️ Read more: www.mpikg.mpg.de/6937908/news...
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 23/09/2026
Science Picture of the Month September 🌈 This colourful image was taken by Maik Rosentreter, who is currently an intern in Charlotte Teschers research group, “Organofluorine Chemistry and Innovative Catalysis Paradigms”, in the Department of Biomolecular Systems. ⬇️⬇️
Photo: Maik Rosentreter
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 22/09/2026
It was a pleasure to welcome @ahugumrah.bsky.social from the University of Manchester. 👏 She explored how beetles create striking optical effects, such as vivid colours, through precisely organised structures rather than pigments, and how studying these structures can inspire new photonic materials.
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 22/09/2026
We congratulate our Director, Prof. Peter H. Seeberger, on receiving the Liebig Medal from the @gdch.de. The award recognises his significant contributions to carbohydrate chemistry. ➡️ More information: www.mpikg.mpg.de/6937361/pete... Photo: GDCh/Maik Schulze, Berlin
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Max-Planck-Gesellschaft @maxplanck.de · 09/09/2026
We are hiring! Start at a #MaxPlanckInstitute with your own independent Max Planck Research Group. This position is equivalent to a W2 Professorship at a German university, or Associate Professor internationally. 🔗Apply until October 14th! www.mpg.de/career/max-p... #ScienceCareer #MPRG #TenureTrack
Call for independent Max Planck Research Groups
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 15/09/2026
Bitte teilen 👇 Wir suchen zum nächsten Jahr eine/n Auszubildende/n zur/zum Fachinformatiker/in der Fachrichtung Systemintegration (m/w/d). 👉 Bewerbungsfrist ist der 31.03.2027. 👉 Hier bewerben: jobs.mpikg.mpg.de/jobposting/3... #Azubigesucht #Job #Stellenausschreibung #Fachinformatik #Ausbildung
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 08/09/2026
Thank you for your visit, Gerd Schröder-Turk (@murdoch.edu.au)! In his talk, he explained how some green butterflies get their bright colors. These butterflies don't use pigments to color their wings. Instead, they produce their color through a 3D nanostructure (gyroid) that interacts with light. 🦋
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 07/09/2026
Only one week left to apply! Are you still thinking about applying to our #IMPRS for Functional Material Design? Swipe through to find out how to apply. 📅 Application deadline: 15 September 2026 ➡️ Find all the information you need and apply on our website: imprs.mpikg.mpg.de
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 03/09/2026
How do cells organize their crowded interior? A review by @dimovalab.bsky.social & @mangiarotti.bsky.social explores how membranes and biomolecular condensates shape each other via phase separation. Published in Nature Reviews Molecular Cell Biology: www.nature.com/articles/s41...
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 02/09/2026
🧵 1/5 Looking for a PhD at the interface of chemistry, biology, physics, and materials science? Apply now: www.imprs.mpikg.mpg.de Our International Max Planck Research School for Functional Material Design is offering nine doctoral positions for the upcoming year. Here's why you should apply 👇
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 31/08/2026
One of the many PhD positions we offer with our new #IMPRS for Functional Material Design ⬇️⬇️ Take a look at all the projects here: imprs.mpikg.mpg.de/home/projects/
imprs.mpikg.mpg.de
Projects – IMPRS for Functional Material Design (FMD)
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 26/08/2026
It was a pleasure to welcome Fiona Kearns from the @kearnslab.bsky.social ab.bsky.social at Uni Freiburg for a seminar on the molecular dynamics of the #glycocalyx. It focused on how molecular dynamics simulations can help uncover relationships between molecular structure, dynamics, and function.
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 24/08/2026
NEW article: How can we learn from the way a silkworm spins its cocoon? We present an agent-based computational modelling approach based on a set of behaviors observed in the Bombyx mori silkworm. ➡️ iopscience.iop.org/article/10.1... #MattersofActivity @exc-intcdc.bsky.social #Biomaterials
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Reposted by Max Planck Institute of Colloids & Interfaces (MPICI)
Potsdam Science Park @potsdamsciencepark.bsky.social · 20/08/2026
Potsdam Science Park Invites You to Take Part in the Step Challenge 2026! From Sept. 1 to 29, it’s all about racking up steps together, staying active, and having fun as »Team PSP«! 👉 p-sp.link/step-challen... A #BARMER health insurance fund cooperation #stepchallenge #PotsdamSciencePark
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 20/08/2026
🎓 IMPRS for Functional Material Design 🎓 To give you an idea of what the PhD's are about, here is a brief overview of the projects and their cooperation partners. Full details on the website. 📅 Application deadline: September 15, 2026 ➡️ How to apply: lnkd.in/dtC2hBk
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 20/08/2026
Unsere Forscherin Franziska Jehle aus der Abteilung Biomaterialien im Interview mit @rbb24.de 👇
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 19/08/2026
Applications are now open for the International Max Planck Research School for Functional Material Design! You can find details all of the different projects and more information on our website. ➡️ Apply now: imprs.mpikg.mpg.de 🗓 Deadline for the first round of applications is September 15, 2026.
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Healthcare in Europe (DE) @health-europe-de.bsky.social · 19/08/2026
Forschende des @mpici.bsky.social, @freieuniversitaet.bsky.social und @exeter.ac.uk haben einen neuen Ansatz gegen den multiresistenten Krankenhauspilz #CandidaAuris entwickelt. Ein synthetisches Zuckermolekül dient dabei als Grundlage.
healthcare-in-europe.com
Candida auris: Neuer Ansatz gegen multiresistenten Krankenhauspilz
Neu identifizierte Zuckerstruktur entspricht einem Bestandteil der Oberfläche von C. auris, dient als Grundlage für einen Impfstoffkandidaten und schützende Antikörper
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Reposted by Max Planck Institute of Colloids & Interfaces (MPICI)
Max-Planck-Gesellschaft @maxplanck.de · 18/08/2026
A slime for every occasion! 🐌The grove #snail (Cepaea nemoralis) can produce 5 distinct types of mucus - from slippery to sticky - by tweaking the same basic ingredients for different tasks. Basically, they’re tiny, ingenious materials scientists!🤗New study by @mpici.bsky.social
mpg.de
Following the Trail of Slime
The ribbon snail specifically adapts its mucus using the same building blocks for crawling, adhesion, and protection. Collagen VI and Calcium are essential components of snail slime.
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 12/08/2026
A synthetic sugar molecule could help fight the drug-resistant fungus Candida auris. It was used to develop a vaccine candidate, a passive immunotherapy and a rapid test prototype. @freieuniversitaet.bsky.social @mrccmm.bsky.social ➡️ onlinelibrary.wiley.com/doi/10.1002/...
© TopMicrobialStock/Adobe Stock
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Potsdam Science Park @potsdamsciencepark.bsky.social · 07/08/2026
At PSP Conference 2026 – RESTART 📅 24 Sept. 2026, Johannes Zier, Head of Startup Service at Potsdam Transfer @unipotsdam.bsky.social will will share perspectives on turning research into entrepreneurial action. #PSPConference2026 #sciencepreneurs #deeptech #entrepreneurship #PotsdamSciencePark
PSP Conference 2026 – RESTART: Johannes Zier, Head of Startup Service at Potsdam Transfer “From Lab to Launch: Startup Support for Researchers”
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Science Magazine @science.org · 07/08/2026
How do snails make “slime” that can do so many jobs? In a new Science study, researchers report that collagen and calcium work together to fine-tune snail mucus’s mechanical properties for each task, offering inspiration for adhesives and other novel materials. scim.ag/45FLu7N
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 07/08/2026
Let them roam... just like our brown-lipped snails, which are featured in this issue of @science.org Magazine. More info about the fascinating snail mucus and its potential applications in materials science ➡️ www.science.org/doi/10.1126/...
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 07/08/2026
New paper in @science.org from our Biomaterials Department: The slime of the common brown-lipped #snail demonstrates an extraordinary natural phenomenon: it can alter its consistency from solid to sticky to liquid using just a few molecular building blocks. ➡️ www.science.org/doi/10.1126/...
The brown-lipped snail on a piece of bark. Credit: Max-Planck-Institut für Kolloid- und GrenzflächenforschungCredit: Franziska Jehle/Max-Planck-Institut für Kolloid- und Grenzflächenforschung
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 05/08/2026
Join the European Marie Skłodowska-Curie Doctoral Network! We’re looking for a Doctoral Candidate (m/f/d) for Electrochemical Interfaces in Energy Storage. Apply now: jobs.mpikg.mpg.de/jobposting/e...
Photo: Goran Gnaudschun
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 04/08/2026
Our Director, Silvia Vignolini (@vignolinilab.bsky.social), in an interview about her scientific journey and the international research group she has established at the Institute. 👇👇
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 30/07/2026
“It’s a bit like mixing paints until you get the color you want,” Samuel Humphrey from @vignolinilab.bsky.social say. Actually, he adds, “it’s better than that.” Learn more about the fascinating way in which sea snails get their remarkable colors 👇
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 21/07/2026
Wir stellen ein! Für den Bereich Finanzen suchen wir eine neue Kollegin oder einen neuen Kollegen für die Leitung. Die Stelle ist unbefristet und kann in Voll- oder Teilzeit ausgefüllt werden. Gerne weitersagen 📣 Alle Informationen 👉 jobs.mpikg.mpg.de/jobposting/4...
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Potsdam Science Park @potsdamsciencepark.bsky.social · 17/07/2026
Register Now: PSP Conference 2026 – RESTART Brings Together the DeepTech Ecosystem at the Fraunhofer Conference Centre of the Potsdam Science Park! potsdam-sciencepark.de/en/jetzt-anm... #PSPconference #startups #deeptech #BerlinBrandenburg
potsdam-sciencepark.de
Register Now: PSP Conference 2026 – RESTART Brings Together the DeepTech Ecosystem – Potsdam Science Park
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 09/07/2026
We are excited to announce that the next generation of sustainable materials will be inspired by nature: Our new #IMPRS for Functional Material Design will welcome 23 fully funded doctoral candidates starting in winter 2026/27. @maxplanck.de More information ➡️ www.mpikg.mpg.de/new-impres-f...
mpikg.mpg.de
Learning from Nature: New IMPRS for Functional Material Design
Functional Material Design graduate school fosters research at the intersection of physics, chemistry, biology, and materials science.
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 06/07/2026
Learn more about the science coming out of @vignolinilab.bsky.social 🔬 You can find more information on Impressionist sea slugs here ➡️ www.mpikg.mpg.de/6921968/news...
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 06/07/2026
#Glycolipids can target antigen-presenting cells specifically, but synthesising them is laborious and offers limited flexibility. Researchers have now developed a unified solid-phase platform for the rapid and modular synthesis of glycolipids. 👉 pubs.acs.org/doi/10.1021/... @pubs.acs.org
pubs.acs.org
Solid-Phase Glycolipid Synthesis Expedites Liposome Functionalization
Glycolipids play important roles in immune modulation, which makes them attractive components for vaccine delivery systems. However, access to these molecules remains a major limitation as most synthe...
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 30/06/2026
Congratulations to @delbiancom.bsky.social on receiving an #ERCPoC for her #G-EFF project 🎉 #Glycans are difficult to study due to their structural complexity. This grant will enable Delbianco and her team to explore new applications based on their #CarbohydrateResearch. #Glycotime @erc.europa.eu
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 25/06/2026
➡️ Wie kann Deutschland seine Chemieindustrie neu erfinden? Peter Seeberger im Podcast „DeepTech Unlocked” von @1e9tech.bsky.social: Über die notwendige Transformation der Chemieindustrie und die Rolle von #DeepTech für den technologischen Fortschritt. 🎧 Zur Folge: www.1e9.community/deeptech-unl...
Poster des Podcasts "DeepTech Unlocked" für die Episode mit Peter Seeberger. Auf der linken Seite ist sein Portrait zu sehen, er trägt eine dunkle Brille und einen Anzug. Daneben steht sein Name und das MPIKG. Unten steht "ein 1E9-Podcast mit Thomas Lange & Thorsten Lambertus".
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 17/06/2026
Wir stellen ein! 📣 Wir suchen eine Sachgebietsleitung Finanzen (m/w/d) im Bereich #Finanzen und #Drittmittel. 🔹 mit Leitung eines derzeit fünfköpfigen Teams 🔹 Voll- oder Teilzeit möglich 🔹 unbefristet 📆 Bewerbungsschluss: 12. Juli 2026 👉 Weitere Informationen: jobs.mpikg.mpg.de/jobposting/4...
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 01/04/2026
Exciting work in the space of #SyntheticCell. Our recent work, rdcu.be/e93ZA in @natcomms.nature.com provide an accurate way of generating complex asymmetric bilayers with phase separation - bringing #bottomup #SCs ever so close to real cells.
rdcu.be
Engineering synthetic cells with intramembrane domains possessing distinct bilayer asymmetries
Nature Communications - Lipid bilayer asymmetry, phase separation, and encapsulation are long standing issues in the development of synthetic cells. Here the authors develop an inverted emulsion...
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 02/02/2026
PhDs & PostDocs at MPICI: get to your keyboards & register for the MPICI #Symposium to get a glimpse into what everyone’s up to in the labs. ➡️ Register by 15 Feb. events.mpikg.mpg.de/event/21 ⬅️ 🗓️ 15 April FLASH TALKS | PITCH YOUR RESEARCH | POSTER SESSION | NETWORKING
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Martina Delbianco @delbiancom.bsky.social · 29/01/2026
De novo design of glycan foldamers with programmable tertiary structure out today in @jacs.acspublications.org Congrats to Yadiel! With Nishu Yadav, Martin Rosenthal and Yu Ogawa @mpici.bsky.social @cermav.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
De Novo Design of Glycan Foldamers with Programmable Tertiary Structure
De novo molecular design has yielded proteins and peptides with structures and functions beyond those found in nature. Despite the potential for glycans to form a broader scope of well-defined tertiary architectures, owing to the numerous conjugation sites and stereocenters, no one has yet built glycans with targeted structures and functions from scratch. Here, we designed glycan sequences that fold into programmable 3D architectures. Starting from first-principles, we create a linear glycan that spontaneously adopts a rigid tertiary structure not reported for natural glycans. Considering stereochemical and spatial orientation, we identify a rigid trisaccharide turn unit that programs backbone directionality, driving folding into antiparallel geometry. The combination of this turn unit with multiple cellulose-like strands completes our design, stabilizing a tertiary sheet-like folding, as confirmed by nuclear magnetic resonance spectroscopy and small-angle X-ray scattering (SAXS). To quantitatively evaluate the conformational landscape of our glycans in aqueous solution, we built a semiautomated protocol that integrates SAXS data with molecular dynamics simulations, demonstrating further the effectiveness of our design principles. This is an important step to design and control conformation populations, not just single structures in the solid state or of unknown prevalence in the solution phase. Together, these results show that glycans can be programmed to adopt rigid tertiary structures on demand, opening new avenues for de novo glycan-based architectures in synthetic glycobiology, catalysis, and materials science.
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 26/01/2026
🔬Heute entdeckte eine Klasse der #Voltaireschule in #Potsdam die Geheimnisse der #Strukturfarbe. Der beste Moment blieb off-camera: Wir waren einfach zu begeistert, im Labor zu sehen, wie #Zellulose mit periodischen #Nanostrukturen Licht lenkt – und Farbe ganz ohne Pigmente entsteht. 🌈
A researcher explains structural color to school pupilsA researcher explains structural color to school pupils
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Fritz Haber Institute of the Max Planck Society @fhi-mpg.bsky.social · 26/01/2026
Today, on #CleanEnergyDay we want to remind everyone that the #energy transition is one of the greatest challenges of our time! At FHI, we work on solutions together with kindred spirits worldwide. Let's do research for our planet! #InternationalDayOfCleanEnergy
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 23/01/2026
From plant-based linalool, our scientists made sulfur-rich polymers that form a #sulfur–carbon hybrid—confining & stabilising sulfur. Result: a high-performance room-temp #sodium–sulfur#cathode from abundant, sustainable resources. 🔋Better #nanoscale design ➡️ better #batteries tinyurl.com/4avfnb8u
tinyurl.com
Unravelling the Secret of Sulfur Confinement and High Sulfur Utilization in Hybrid Sulfur‐Carbons
Thermal condensation of inverse vulcanized sulfur-carbon hybrids enables a bottom-up sulfur confinement strategy, in which a protective carbon phase is progressively constructed around sulfur species....
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 22/01/2026
What does a "self-driving lab" look like & how could #sugars shape the future of #medicine? In BMS labs, #AI & #automation predict & execute #carbohydrate synthesis, enabling new #vaccines & diagnostic tools. Long-term vision: remote drug factories w/ limited infrastructure. tinyurl.com/535pvpm4
tinyurl.com
The Future of Medicine: Automating Chemistry with Peter Seeberger
In this episode of "On The Go," we visit the Max Planck Institute of Colloids and Interfaces to meet Peter Seeberger, a visionary chemist and entrepreneur who is transforming the world of medicine. Discover how Peter and his team are automating the complex process of synthesizing carbohydrates (sugars), reducing a task that once took years to just a single day. We explore the cutting-edge Artemiflow technology and the concept of a "self-driving lab"—where AI and automation work 24/7 to predict and execute chemical reactions with unprecedented precision. 0:00 Intro: Meet Peter Seeberger 0:31 Automation vs. Traditional Chemistry 1:18 The Carbohydrate Synthesis Revolution 2:02 How the "Sugar Machine" Works 2:46 From "Bucket Chemistry" to Flow Reactors 3:30 Artemiflow: Real-World Medical Impact 4:15 The Concept of the "Self-Driving Lab" 5:03 Decentralized Medicine: Pharmacies in a Container 5:45 Is Automation a Threat to Jobs? 6:24 The Future: Curiosity-Driven Science 7:05 Outro: Scaling Innovation from Germany In this video, you'll learn about: The revolutionary machine that automates carbohydrate synthesis. How "sugar chemistry" is being used to develop new vaccines and diagnostic tools. The move from "bucket chemistry" to "pipe chemistry" (flow reactors) for safer, more efficient production. Peter’s vision for remote drug factories that could provide life-saving medications to countries with limited pharmaceutical infrastructure. Is automation a job killer for chemists, or the key to a more competitive and innovative future? Join us for an inspiring look at how curiosity-driven science is solving global challenges. Hashtags #Chemistry #Innovation #Automation #MaxPlanckInstitute #DrugDiscovery #Vaccines #Biotech #PeterSeeberger #Artemiflow #FutureOfMedicine #ScienceCommunication #Entrepreneurship
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 20/01/2026
Exciting news @vignolinilab.bsky.social: 4 scientists have secured prestigious fellowships to explore nature’s design principles. 🎉Congrats to: Antonio Carone (Code𝛘 Priority Programme @dfg.de) & @humboldt-foundation.de Fellows: Gaoyuan Hou, Jingjiang Wei, & Ran Zhao🎉 www.mpikg.mpg.de/sbm
mpikg.mpg.de
Sustainable and Bio-inspired Materials
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Reposted by Max Planck Institute of Colloids & Interfaces (MPICI)
Laura Zorzetto @laurazorzetto.bsky.social · 19/01/2026
What do Zn, hydroxyapatite and bacteria have in common? They can all be found in E. coli biofilm! 🧫🦠 Check out my latest paper in the group of @cmbidan.bsky.social at @mpici.bsky.social in collaboration with Ioanna Mantouvalou and Leona Bauer at @tuberlin.bsky.social www.nature.com/articles/s41...
nature.com
Zinc and hydroxyapatite co-localize during in vitro E. coli biofilms mineralization - Scientific Reports
Biofilms are biological materials that form as bacteria protect themselves from environmental challenges secreting extracellular matrix and accumulating minerals under specific conditions. To understa...
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 16/01/2026
❗Deadline extended: 1st February❗ On your marks, steady, apply and shape the future of #EnergyConversion & #EnergyStorage with @paologiusto.bsky.social tinyurl.com/y5crap7n #ChemSky #PostDoc #AcademicJobs #ResearchCareer #AcademicLife #ScienceJob
tinyurl.com
Postdoctoral Position (m/f/d) in 2D Covalent Thin Films for Light-Induced Energy Conversion
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 13/01/2026
Is it possible to conceive & manufacture #polyester with built-in recyclability for a sustainable future & #CircularEconomy? Manuel Häußler is tackling the challenge at #WissenschaftLive by @maxplanck.de 📆Tue, 20 Jan 🕒3:30 - 4:45 pm CET 📍Online (registration required) ➡️ tinyurl.com/2ncte899
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Max Planck Institute of Colloids & Interfaces (MPICI) @mpici.bsky.social · 12/01/2026
New week, new paper out: mirror-image #glycans are still rarely used to design #carbohydrate materials, but they can reveal the rules of how these materials form & help researchers control their synthesis. #glycotime #chemsky
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