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16 results on '"Hamaker constant"'

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1. New Insights into Aggregation Behaviors of the UV-Irradiated Dissolved Biochars (DBioCs) in Aqueous Environments: Effects of Water Chemistries and Variation in the Hamaker Constant.

2. Analytical theory for the crossover from retarded to non-retarded interactions between metal plates.

3. Novel analytical expressions for determining van der Waals interaction between a particle and air-water interface: Unexpected stronger van der Waals force than capillary force.

4. Influence of humectants on the thermotropic behaviour and nanostructure of fully hydrated lecithin bilayers.

5. Aggregation kinetics of UV-aged soot nanoparticles in wet environments: Effects of irradiation time and background solution chemistry.

6. High-resolution compositional mapping of surfaces in non-contact atomic force microscopy by a new multi-frequency excitation.

7. Lifshitz theory of wetting films at three phase coexistence: The case of ice nucleation on Silver Iodide (AgI).

8. Observation of interaction forces by investigation of the influence of eluent additives on the retention behavior of aqueous nanoparticle dispersions in asymmetrical flow field-flow fractionation.

9. Modulation of substrate van der Waals forces using varying thicknesses of polymer overlayers.

10. Aggregation kinetics of UV irradiated nanoplastics in aquatic environments.

11. Aggregation of oxidized multi-walled carbon nanotubes: Interplay of nanomaterial surface O-functional groups and solution chemistry factors.

12. In situ characterization of nanoscale contaminations adsorbed in air using atomic force microscopy.

13. Lifshitz analysis of dispersion forces based on quantitative reflection electron energy loss spectroscopy.

14. A review on data and predictions of water dielectric spectra for calculations of van der Waals surface forces.

15. An evaluation of complementary approaches to elucidate fundamental interfacial phenomena driving adhesion of energetic materials.

16. Stability of Polymer Ultrathin Films (<7 nm) Made by a Top-Down Approach.

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