Two decades of Martini: Better beads, broader scope
The Martini model, a coarse‐grained force field for molecular dynamics simulations, has
been around for nearly two decades. Originally developed for lipid‐based systems by the …
been around for nearly two decades. Originally developed for lipid‐based systems by the …
Recent Progress on Self‐Healable Conducting Polymers
Materials able to regenerate after damage have been the object of investigation since the
ancient times. For instance, self‐healing concretes, able to resist earthquakes, aging …
ancient times. For instance, self‐healing concretes, able to resist earthquakes, aging …
Operando characterization of organic mixed ionic/electronic conducting materials
Operando characterization plays an important role in revealing the structure–property
relationships of organic mixed ionic/electronic conductors (OMIECs), enabling the direct …
relationships of organic mixed ionic/electronic conductors (OMIECs), enabling the direct …
Organic Bioelectronics for In Vitro Systems
Bioelectronics have made strides in improving clinical diagnostics and precision medicine.
The potential of bioelectronics for bidirectional interfacing with biology through continuous …
The potential of bioelectronics for bidirectional interfacing with biology through continuous …
Surface reconstruction engineering with synergistic effect of mixed‐salt passivation treatment toward efficient and stable perovskite solar cells
Surface passivation treatment is a widely used strategy to resolve trap‐mediated
nonradiative recombination toward high‐efficiency metal‐halide perovskite photovoltaics …
nonradiative recombination toward high‐efficiency metal‐halide perovskite photovoltaics …
The martini model in materials science
The Martini model, a coarse‐grained force field initially developed with biomolecular
simulations in mind, has found an increasing number of applications in the field of soft …
simulations in mind, has found an increasing number of applications in the field of soft …
Challenges and opportunities of implantable neural interfaces: From material, electrochemical and biological perspectives
Q Zeng, Z Huang - Advanced Functional Materials, 2023 - Wiley Online Library
The desirable implantable neural interfaces can accurately record bioelectrical signals from
neurons and regulate neural activities with high spatial/time resolution, facilitating the …
neurons and regulate neural activities with high spatial/time resolution, facilitating the …
Fast Visible‐Light 3D Printing of Conductive PEDOT: PSS Hydrogels
N Lopez‐Larrea, A Gallastegui… - Macromolecular …, 2024 - Wiley Online Library
Functional inks for light‐based 3D printing are actively being searched for being able to
exploit all the potentialities of additive manufacturing. Herein, a fast visible‐light …
exploit all the potentialities of additive manufacturing. Herein, a fast visible‐light …
Achieving long-term stability of thin-film electrodes for neurostimulation
P Oldroyd, GG Malliaras - Acta Biomaterialia, 2022 - Elsevier
Implantable electrodes that can reliably measure brain activity and deliver an electrical
stimulus to a target tissue are increasingly employed to treat various neurological diseases …
stimulus to a target tissue are increasingly employed to treat various neurological diseases …
What Can We Learn about PEDOT: PSS Morphology from Molecular Dynamics Simulations of Ionic Diffusion?
T Sedghamiz, AY Mehandzhiyski… - Chemistry of …, 2023 - ACS Publications
Poly (3, 4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT: PSS) is one of the most
important mixed electron-ion conducting polymers, where the efficiency of the ion transport …
important mixed electron-ion conducting polymers, where the efficiency of the ion transport …