The role of the electrostatic force in spore adhesion.
Explore this paper's citation graph
Summary
It is shown that the electrostatic forces play a significant role in the adhesion force between spores and planar surfaces.
- Type
- article
- Published
- 2010-07-28
- Cited by
- 34
- References
- 30
- OpenAlex
- https://openalex.org/W1968904369
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:33808418
Keywords
Mica, Adhesion, van der Waals force, Surface force, DLVO theory
References
- Physical models for photoactive pigment electrophotography
- Removal of fine powders from film surface. I. Effect of electrostatic force on the removal efficiency.
- The high-resolution architecture and structural dynamics of Bacillus spores.
- Effect of aqueous phase properties on clay particle zeta potential and electro-osmotic permeability : Implications for electro-kinetic soil remediation processes
- Adhesion of charged particles
- Relative importance of electrostatic forces on powder particles
- Electrostatic force acting on a spherically symmetric charge distribution in contact with a conductive plane
- Electrostatic adhesion of ion and triboelectric-charged particles
- Scaling of van der Waals and Electrostatic Adhesion Interactions from the Micro- to the Nano-Scale
- Investigation of Humidity-Dependent Capillary Force
- Forces involved in adhesion of Bacillus cereus spores to solid surfaces under different environmental conditions.
- Adhesion forces of charged particles
- Kinetics of size changes of individual Bacillus thuringiensis spores in response to changes in relative humidity
- Investigation of micro-adhesion by atomic force microscopy
- Measurement of Dielectric Surface Charge Density and Total Charge Density of a Condenser
- Electrokinetic and Direct Force Measurements between Silica and Mica Surfaces in Dilute Electrolyte Solutions
- The dynamic spore
- Specific and nonspecific interaction forces between Escherichia coli and silicon nitride, determined by poisson statistical analysis.
- Adhesion of spores of Bacillus thuringiensis on a planar surface.
- Attractive Forces Between Micron-Sized Particles: A Patch Charge Model
Cited by
- The role of electrostatic charge in the adhesion of spherical particles onto planar surfaces in atmospheric systems
- Surface modifications of stainless steel to minimise contamination in mass spectrometers
- Characterization of electrical surface properties of mono- and co-cultures of Pseudomonas aeruginosa and methicillin-resistant Staphylococcus aureus using Kelvin probe force microscopy
- Role of mechanical vs. chemical action in the removal of adherent Bacillus spores during CIP procedures.
- Walking-induced particle resuspension in indoor environments
- Friction and adhesion forces of Bacillus thuringiensis spores on planar surfaces in atmospheric systems.
- Influence of radioactivity on surface charging and aggregation kinetics of particles in the atmosphere.
- Interaction forces between spores and planar surfaces in aqueous solutions
- Scanning surface potential microscopy of spore adhesion on surfaces.
- Atomic force microscopy: a tool to analyze the structural organization of pathogenic protozoa.
- Colloidal particle-surface interactions in atmospheric and aquatic systems
- Quantitative attachment and detachment of bacterial spores from fine wires through continuous and pulsed DC electrophoretic deposition.
- Spore Surface Display
- Influence of surface potential on the adhesive force of radioactive gold surfaces.
- Aerosol and Surface Deposition Characteristics of Two Surrogates for Bacillus anthracis Spores
- Deposition method, relative humidity, and surface property effects of bacterial spore reaerosolization via pulsed air jet
- Adhesion and aerodynamic forces for the resuspension of non-spherical particles in outdoor environments
- Assessing the Impact of Germination and Sporulation Conditions on the Adhesion of Bacillus Spores to Glass and Stainless Steel by Fluid Dynamic Gauging
- Ultrasound: Enhance the detachment of exosporium and decrease the hydrophobicity of Bacillus cereus spores
- Overview of mechanistic particle resuspension models: comparison with compilation of experimental data
Related papers
- Double Layer Forces over Large Potential Ranges as Measured in an Electrochemical Surface Forces Apparatus
- Effects of long-chain surfactants, short-chain alcohols and hydrolyzable cations on the Hydrophobic and Hydration Forces
- Interaction mechanism between hydrophobic and hydrophilic surfaces: using polystyrene and mica as a model system.
- DLVO and hydration forces between mica surfaces in Li+, Na+, K+, and Cs+ electrolyte solutions: A correlation of double-layer and hydration forces with surface cation exchange properties
- Surface forces in particle technology: Wet systems
- Hydration forces between mica surfaces in electrolyte solutions
- Interaction forces between colloidal particles in liquid: theory and experiment.
- Hydration forces between silica surfaces: experimental data and predictions from different theories.
- Interactions between a positively charged hydrophobic surface and a negatively charged bare mica surface
- An atomic force microscopy study of the adhesion of a silica sphere to a silica surface—effects of surface cleaning