#ACSNano
Researchers developed a graphene-based patch that destroys melanoma cells and may boost immune response. Lab tests showed up to 97% effectiveness, suggesting a less invasive alternative to traditional cancer treatments.

DOI: 10.1021/acsnano.5c21102
April 14, 2026 at 5:00 PM
Científicos desarrollaron un parche con grafeno y cobre que elimina hasta el 97% del melanoma en laboratorio. También podría activar el sistema inmunitario, ofreciendo una alternativa menos invasiva al tratamiento del cáncer.

DOI: 10.1021/acsnano.5c21102
April 14, 2026 at 5:00 PM
The Road Ahead for Metal–Organic Frameworks: Current Landscape, Challenges and Future Prospects http://dx.doi.org/10.1021/acsnano.4c14744
January 4, 2025 at 3:14 PM
March 21, 2026 at 8:30 AM
Ein internationales Team hat ein Mikrofluidik-System entwickelt, das hochaufgelöste Mikroskopie einfacher und reproduzierbarer macht.
doi.org/10.1021/acsn...

@joergenderlein.bsky.social
@romantsukanov.bsky.social
@uni-goettingen.de

Bild: © Basak S et al., ACS Nano, DOI: 10.1021/acsnano.5c18697
March 4, 2026 at 9:32 AM
Improve #LipidNanoPariticle delivery to #Glioblastoma

👉Local injection
👉Convection-enhanced delivery via⏫colloidal stability outer surface mod with poly-L-glutamate/hyaluronate
👉⏫Tumor cell targeting vs unmod liposome
👉In vivo retention t1/2 12~13 d

#ACSNano 2023
pubs.acs.org/doi/10.1021/...
December 29, 2024 at 12:32 PM
Biological nanoparticles, anyone?

RPS-FLIM combines the benefits of resistive-pulse sensing (RPS) and fluorescence lifetime imaging microscopy (FLIM) to differentiate dye-labeled biological nanoparticles by size, charge, and membrane composition. #ACSNano

doi.org/10.1021/acsnano.4c10813
Resistive-Pulse Sensing Coupled with Fluorescence Lifetime Imaging Microscopy for Differentiation of Individual Liposomes
Characterization of individual biological nanoparticles can be significantly improved by coupling complementary analytical methods. Here, we combine resistive-pulse sensing (RPS) with fluorescence lif...
doi.org
January 1, 2025 at 6:41 PM
📄 A recent study in #ACSNano by @heilemannlab.bsky.social shows that 🔬STED microscopy with DNA-fluorophore labels enables intensity-based molecular counting. Happy to see our #nanobodies 🦙 FluoTag®-X4 anti-GFP and sdAb anti-ALFA contribute to this work.
Read the paper here: doi.org/10.1021/acsn...
April 10, 2026 at 8:12 AM
Ultralow and Twist-Tolerant Thermal Conductivity in Two-Dimensional Pentagonal Covalent Organic Frameworks http://dx.doi.org/10.1021/acsnano.5c12577
January 2, 2026 at 3:14 PM
Exceptional Monovalent Anion Selectivity in One-Dimensional Rectifying Metal–Organic Framework Subnanochannels http://dx.doi.org/10.1021/acsnano.5c02063
June 10, 2025 at 2:13 PM
Imaging of Guest Molecule Adsorption onto 2D Covalent Organic Frameworks by Scanning Tunneling Microscopy http://dx.doi.org/10.1021/acsnano.5c02862
May 24, 2025 at 5:12 PM
Fine-tune energy flow with atom swaps! A new #ACSNano publication from Prof. Greg Engel & Prof. Giulia Galli labs reveal new possibilities in cesium bismuth halide quantum dots for next-gen devices. #quantumdots #materials

pubs.acs.org/doi/10.1021/...
March 7, 2025 at 11:12 PM
🚨My new cover for #ACSNano!

I designed the artwork to capture the moment when multiple colorful light beams strike a single-layer material. The glowing waves rising from the surface represent the newly generated twisted light 💡

🔗 doi.org/10.1021/acsn...
November 23, 2025 at 2:34 PM
Good new tech needs a cool name, and I think Carbothermal Shock hits that. Although at the end of the day, it just comes down to pumping a lot of current through a piece of carbon to generate heat. 🧪

Link: https://doi.org/10.1021/acsnano.4c12350​
July 26, 2026 at 1:41 AM
Emerging Trends in Conductive Two-Dimensional Covalent Organic Frameworks for Large-Area Electronic Applications http://dx.doi.org/10.1021/acsnano.4c16302
March 14, 2025 at 1:17 PM
Zinc-Ion Conductive Metal–Organic Framework Interfaces for Comprehensive Anode Protection in High-Performance Aqueous Zinc-Ion Batteries http://dx.doi.org/10.1021/acsnano.4c18162
May 8, 2025 at 1:20 PM
We are excited to have Prof. Il-Doo Kim of #KAIST, #ACSNano executive editor, speaking @cnsiatucla.bsky.social Monday at 1 PM #nano #catalysis
June 29, 2026 at 1:12 AM
Targeting #EndMT (Barrier/Mechanics/Inflammation) in vitro using N-cadherin antibody-conjugated natural melanin nanoparticle

HUVEC
HDMVEC
HCAEC

Ignore the title type; Clean in vitro data; wait for in vivo data

#AcsNano 2024
pubs.acs.org/doi/10.1021/...
April 6, 2024 at 12:37 PM
Last paper with my friend & collaborator Doug Gin who passed away in a tragic accident last year. We enjoyed working together on molecular design for nanoporous polymers. This work highlights morphology and hydration effects on anion transport. doi.org/10.1021/acsnano.4c14234
The Effects of Morphology and Hydration on Anion Transport in Self-Assembled Nanoporous Membranes
Ordered nanoporous polymer membranes offer opportunities for systematically probing the mechanisms of ion transport under confinement and for realizing useful materials for electrochemical devices. He...
doi.org
February 26, 2025 at 6:36 PM
Viele winzige Details einer Zelle gleichzeitig sichtbar machen: Forschende verbessern mit Mikrofluidik anspruchsvolle Superauflösungsmikroskopie ...
weiterlesen
March 3, 2026 at 8:23 AM
Prospects of Nanoscience with Nanocrystals: ISTA Professor Maria Ibáñez joins forces with other researchers to highlight the progress in the field & identify key areas where future research may bring further breakthroughs. Published in ACS Nano @pubs.acs.org​
https://doi.org/10.1021/acsnano.5c07838
September 17, 2025 at 1:00 PM
New paper published in #ACSNano @pubs.acs.org. We study bilayers of an electron acceptor molecule on Pb. Hint: the structure is stabilized by adatoms. @uni-kiel.de @dipcehu.bsky.social @cfmdonostia.bsky.social #Openaccess pubs.acs.org/ancac3/artic...
August 27, 2026 at 8:25 AM
🌟My new cover for #ACSNano!

This paper highlights how #interdisciplinary collaboration is essential in complex fields like #nanomedicine and #biomedical_engineering. A great example is the development of the COVID-19 vaccine🦠, where global, transparent teamwork accelerated life-saving treatments.
March 9, 2025 at 8:27 AM
👉 Check out our perspective published in #ACSNano @acs.org

📑Merging Natural Biopolymers with Supramolecular Chemistry: Emulating the Native Extracellular Matrix’s Complexity

V Sousa @brunomladeira.bsky.social E Garanger S. Lecommandoux EW Meijer P Dankers JF Mano

🔗 pubs.acs.org/doi/10.1021/...
pubs.acs.org
August 15, 2025 at 12:55 PM