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The layered soot particle on the glass slide exhibits maximum water contact angle of 168°.
Soot particle number concentration were in the range of 104 106 per cm3.
An SMPS system was used to analyze soot particle concentrations in the diluted samples.
Roughness of soot particle and various hydrophobic groups involved for obtaining superhydrophobicity were exposed.
These results show the value of the KMC/MD methodology, which provides insights into the details of soot particle inception.
The model combines recent developments in gas-phase reactions, aromatic chemistry, soot particle coagulation, soot particle aggregation, and develops a new submodel for soot surface growth.
A stochastic approach is used to obtain soot particle size distributions (PSDs).
A methodology has been developed to study soot particle surface reactivity.
Therefore, it is suggested that PAHs are directly involved in the soot particle inception processes.
Soot particle diameters, number densities, and volume fractions was determined using static (classical) light scattering.
Using a stochastic approach, bivariate soot particle distributions are calculated for the first time.
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