works on

From the 1 of 7 linked papers with an AI index.

activity
20242026
collaborators

7 papers

physics.chem-ph2026

Storing Sensor Events in the Interconnection Strength of Conducting Polymer Dendrites

Antoine Baron, Bilel Hafsi, Enrique H. Balaguera +1

The paper demonstrates a neuro‑inspired electronic nose where exposure to volatile molecules triggers reversible impedance changes that drive the electrochemical growth of conducti…

physics.chem-ph2026

On Electropolymerized Fingerprints and their Potential for Identification and Encryption

Antoine Baron, Luc Brulin, Corentin Scholaert +3

While human technology is ruled by determinism, biological systems exploit a subtle balance of control and stochasticity. This balance, evident in the morphogenesis of textural pat…

cond-mat.supr-con2026

Enhanced Charge-Density-Wave Order and Suppressed Superconductivity in Intercalated Bulk

Huanhuan Shi, Qili Li, Antoine M. T. Baron +12

The electronic ground states of transition-metal dichalcogenides are strongly shaped by reduced dimensionality, yet the properties of atomically thin layers remain difficult to pro…

physics.chem-ph2025

Chemical Control for the Morphogenesis of Conducting Polymer Dendrites in Water

Antoine Baron, Corentin Scholaert, David Guérin +3

Conducting polymer dendrite (CPD) morphogenesis is an electrochemical process that unlocks the potential to implement in materio evolving intelligence in electrical systems: As an…

physics.app-ph2025

Hardware Implementation of Tunable Fractional-Order Capacitors by Morphogenesis of Conducting Polymer Dendrites

Antoine Baron, Enrique H. Balaguera, Corentin Scholaert +2

Conventional electronics is founded on a paradigm where shaping perfect electrical elements is done at the fabrication plant, so as to make devices and systems identical, "eternall…

physics.app-ph2024

Correlation between Electrochemical Relaxations and Morphologies of Conducting Polymer Dendrites

Antoine Baron, Enrique H. Balaguera, Sébastien Pecqueur

Conducting Polymer Dendrites (CPD) can engrave sophisticated patterns of electrical interconnects in their morphology with low-voltage spikes and few resources: they may unlock in…