output
20062026
most citedObservation of a Large-scale Anisotropy in the Arrival Directions of Cosmic Rays above eV

409 citations

Showing cond-mat.softShow all

11 papers · 1 filter

cond-mat.soft2023★ 9 cited

Solid-amorphous transition is related to the waterlike anomalies in a fluid without liquid-liquid phase transition

José Rafael Bordin, Leandro B. Krott

The most accepted origin for the water anomalous behavior is the phase transition between two liquids (LLPT) in the supercooled regime connected to the glassy first order phase tra…

cond-mat.soft2021

Phase classification using neural networks: application to supercooled, polymorphic core-softened mixtures

Vinicius F. Hernandes, Murilo S. Marques, José R. Bordin

Characterization of phases of soft matter systems is a challenge faced in many physicochemical problems. For polymorphic fluids it is an even greater challenge. Specifically, glass…

cond-mat.soft2021

Hard core-soft shell particles near repulsive interfaces: interplay between adsorption, aggregation and diffusion

Murilo S. Marques, José Rafael Bordin

The behavior of colloidal particles with a hard core and a soft shell has attracted the attention for researchers in the physical-chemistry interface not only due the large number…

cond-mat.soft2020★ 10 cited

Adsorption of polyelectrolytes on charged microscopically patterned surfaces

Amin Bakhshandeh, Maximiliano Segala

In the present study, we have investigated, using Monte Carlo simulations (MC), the adsorption of polyelectrolytes on the charged nanopatterned surfaces. Different surface patterns…

cond-mat.soft2019★ 41 cited

Charge Regulation of Colloidal Particles: Theory and Simulations

Amin Bakhshandeh, Derek Frydel, Alexandre Diehl +1

To explore charge regulation (CR) in physicochemical and biophysical systems, we present a model of colloidal particles with sticky adsorption sites which account for the formation…

cond-mat.soft2018★ 8 cited

Adsorption isotherms of charged nanoparticles

Alexandre P. dos Santos, Amin Bakhshandeh, Alexandre Diehl +1

We present theory and simulations which allow us to quantitatively calculate the amount of surface adsorption excess of charged nanoparticles onto a charged surface. The theory is…