We are a laboratory devoted to the study of soft matter systems working at the Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas (UNLP-CONICET)
Hoy en #Nano2026 acompañamos las presentaciones de Lucía Pizarro y Luciano Huamani, integrantes del Laboratorio de Materia Blanda.
Compartir resultados, intercambiar ideas y encontrarse con colegas es una parte fundamental de hacer ciencia.
@ebynunsam@unsamoficial@inifta_ok
🎉 Our work just made the cover of @RSCPublishing Applied Interfaces!
We combined MOF-derived porous carbon + conducting polymers via layer-by-layer assembly to build high-performance supercapacitors — sustainably, in aqueous media 💧⚡
🔗 https://t.co/xkuTjt9i1A
@RSCApplied
The events brought together international researchers working on biomaterials, nanotechnology, multiscale modelling, and AI-assisted materials design.
We continue strengthening international scientific collaboration and exchange.
#BIONAM2026#Biomaterials#Nanoscience
Soft Matter Laboratory in Italy 🇮🇹
Five members of our group participated in the Advanced Training School on Innovative Materials and in BIONAM 2026 – Bio & Nanomaterials Conference, hosted by the University of Salerno. @UniSalerno
¿Estás pensando en postular a las becas de la Fundación Williams?
Nuestras áreas de investigación son: nanoarquitectónica de materiales y dispositivos, electroquímica supramolecular y biosensado, materiales porosos y modelado molecular de materiales blandos y nanoestructurados.
¡Unite al Laboratorio de Materia Blanda! 🧬✨
Diseñamos #MOFs inteligentes (ZIF-8) con interruptores moleculares de fenilazoimidazol. Mediante luz UV, controlamos la porosidad del material
🔍 Técnicas involucradas: DRX, Raman, BET y RMN
📩 Contacto: [email protected]
Agradecemos a @clarincom y a la revista Viva por la publicación y difusión de nuestro trabajo en el desarrollo de biosensores para Hepatitis E.
Seguimos trabajando para mejorar herramientas de diagnóstico y aportar a la salud pública.
https://t.co/Z1dVexLHg3
🚀¡Sumate a nuestro equipo de investigación!🧪
Búsqueda interesadxs en realizar Tesina de Grado en el INIFTA, La Plata.
El Proyecto: Estudio de la evolución de nanofármacos en fluidos biológicos
Contacto: [email protected] / [email protected]
¡RT! 📢
We are pleased to share our latest publication:
Combining PEDOT and PANI for Conductive Polymer Hybrid Materials with Enhanced Properties: From All-Plastic Electrodes to OECT Channels
🔗 https://t.co/uxCX3K2Xhf
@exactas_unlp@inifta_ok@CONICETDialoga@CONICETLaPlata#SoftMatter
This hybrid design merges dynamic molecular switching with tunable porosity, yielding materials whose structural and functional responses are actively modulated by confinement and guest uptake, opening new directions for adaptive, paper-based sensing and responsive architectures.
The integration of hierarchically organized porous frameworks with spin-crossover nanodomains enables cooperative interactions across multiple length scales.
A great milestone for @GisensB . Being selected among the 60 most promising early-stage startups in NYC out of 2,300+ candidates is a remarkable achievement. Proud of the team and grateful to everyone supporting the journey.
@visiblehandsvc@NYCEDC
https://t.co/S2tIiLC7z4
In this work, we explore how supramolecular host–guest interactions can be used to control and tune iontronic responses in nanochannels, opening new possibilities for stimuli-responsive and switchable systems in soft matter and nanofluidics.