IS
Title | Published in | Access level | OA Policy | Year | Views | Downloads | |
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Schulze-Hardy rule revisited | Colloid and Polymer Science | 2020 | 330 | 0 | |||
Interactions between similar and dissimilar charged interfaces in the presence of multivalent anions | Physical Chemistry Chemical Physics | 2018 | 268 | 1 | |||
Aggregation and charging of sulfate and amidine latex particles in the presence of oxyanions | Journal of Colloid and Interface Science | 2018 | 234 | 0 | |||
Colloidal Stability in Asymmetric Electrolytes: Modifications of the Schulze–Hardy Rule | Langmuir | 2017 | 461 | 1 | |||
Influence of Protamine Functionalization on the Colloidal Stability of 1D and 2D Titanium Oxide Nanostructures | Langmuir | 2017 | 425 | 0 | |||
Tuning Colloidal Stability of Layered Double Hydroxides: From Monovalent Ions to Polyelectrolytes | Chempluschem | 2017 | 397 | 0 | |||
Destabilization of Titania Nanosheet Suspensions by Inorganic Salts: Hofmeister Series and Schulze-Hardy Rule | Journal of Physical Chemistry. B, Condensed Matter, Materials, Surfaces, Interfaces and Biophysical | 2017 | 456 | 0 | |||
Design of nucleic acid-layered double hydroxide nanohybrids | Colloid and Polymer Science | 2017 | 444 | 0 | |||
Heteroaggregation of oppositely charged particles in the presence of multivalent ions | Physical Chemistry Chemical Physics | 2017 | 405 | 1 | |||
Synthesis and formulation of functional bionanomaterials with superoxide dismutase activity | Nanoscale | 2017 | 406 | 169 | |||
Design of latex-layered double hydroxide composites by tuning the aggregation in suspensions | Soft Matter | 2017 | 403 | 0 | |||
Tuning particle aggregation in suspensions: from monovalent ions to polyelectrolytes | 2017 | 815 | 349 | ||||
Nanometer-ranged attraction induced by multivalent ions between similar and dissimilar surfaces probed using an atomic force microscope (AFM) | Physical Chemistry Chemical Physics | 2016 | 413 | 165 | |||
Ion-Selective Optical Nanosensors Based on Solvatochromic Dyes of Different Lipophilicity: From Bulk Partitioning to Interfacial Accumulation | ACS Sensors | 2016 | 381 | 0 | |||
Aggregation of layered double hydroxide nanoparticles in the presence of heparin: towards highly stable delivery systems | RSC Advances | 2016 | 430 | 172 | |||
Improving the stability of titania nanosheets by functionalization with polyelectrolytes | RSC Advances | 2016 | 429 | 155 | |||
Charging and aggregation of latex particles in aqueous solutions of ionic liquids: towards an extended Hofmeister series | Physical Chemistry Chemical Physics | 2016 | 364 | 163 | |||
Ion specific effects on the stability of layered double hydroxide colloids | Soft Matter | 2016 | 421 | 193 | |||
Potassium Sensitive Optical Nanosensors Containing Voltage Sensitive Dyes | Chimia | 2015 | 552 | 282 | |||
Interaction Forces and Aggregation Rates of Colloidal Latex Particles in the Presence of Monovalent Counterions | Journal of Physical Chemistry. B, Condensed Matter, Materials, Surfaces, Interfaces and Biophysical | 2015 | 346 | 0 | |||
Charged Solvatochromic Dyes as Signal Transducers in pH Independent Fluorescent and Colorimetric Ion Selective Nanosensors | Analytical chemistry | 2015 | 433 | 2 | |||
Forces between Negatively Charged Interfaces in the Presence of Cationic Multivalent Oligoamines Measured with the Atomic Force Microscope | Journal of physical chemistry. C | 2015 | 471 | 0 | |||
Aggregation of Colloidal Particles in the Presence of Multivalent Co-Ions: The Inverse Schulze–Hardy Rule | Langmuir | 2015 | 170 | 0 | |||
Specific Ion Effects on Particle Aggregation Induced by Monovalent Salts within the Hofmeister Series | Langmuir | 2015 | 443 | 0 | |||
Metal loading of lanthanidopolymers driven by positive cooperativity | Dalton transactions | 2015 | 540 | 0 | |||
Dendrimer-Stabilized Titanate Nanowire Dispersions as Potential Nanocarriers | Journal of Physical Chemistry. C | 2015 | 365 | 0 | |||
Potassium-selective optical microsensors based on surface modified polystyrene microspheres | Chemical communications | 2014 | 606 | 2 | |||
Polyelectrolyte adsorption, interparticle forces, and colloidal aggregation | Soft Matter | 2014 | 186 | 125 | |||
Particle aggregation mechanisms in ionic liquids | Physical Chemistry Chemical Physics | 2014 | 186 | 97 | |||
Aggregation of Negatively Charged Colloidal Particles in the Presence of Multivalent Cations | Langmuir | 2014 | 165 | 0 | |||
Predicting Aggregation Rates of Colloidal Particles from Direct Force Measurements | Journal of Physical Chemistry. B, Condensed Matter, Materials, Surfaces, Interfaces and Biophysical | 2013 | 159 | 0 | |||
Measuring particle aggregation rates by light scattering | 2013 | 228 | 91 | ||||
Charging and aggregation of negatively charged colloidal latex particles in the presence of multivalent oligoamine cations | Journal of Colloid and Interface Science | 2013 | 187 | 0 | |||
Probing Colloidal Particle Aggregation by Light Scattering | Chimia | 2013 | 136 | 0 | |||
Attractive Forces between Charged Colloidal Particles Induced by Multivalent Ions Revealed by Confronting Aggregation and Direct Force Measurements | Journal of Physical Chemistry Letters | 2013 | 162 | 0 | |||
Poisson–Boltzmann description of interaction forces and aggregation rates involving charged colloidal particles in asymmetric electrolytes | Journal of Colloid and Interface Science | 2013 | 172 | 0 | |||
Charging and Aggregation of Positively Charged Colloidal Latex Particles in Presence of Multivalent Polycarboxylate Anions | Zeitschrift für Physikalische Chemie | 2012 | 168 | 0 | |||
Charging and stability of anionic latex particles in the presence of linear poly(ethylene imine) | Journal of Colloid and Interface Science | 2011 | 160 | 0 | |||
Molecular mass dependence of adsorbed amount and hydrodynamic thickness of polyelectrolyte layers | Physical Chemistry Chemical Physics | 2011 | 166 | 0 | |||
Probing Nanometer-Thick Polyelectrolyte Layers Adsorbed on Oppositely Charged Particles by Dynamic Light Scattering | Macromolecules | 2010 | 160 | 0 | |||
Electrostatic Stabilization of Charged Colloidal Particles with Adsorbed Polyelectrolytes of Opposite Charge | Langmuir | 2010 | 169 | 0 |