Advances in Colloid Science by Mohammed Muzibur Rahman and Abdullah Mohamed Asiri

By Mohammed Muzibur Rahman and Abdullah Mohamed Asiri

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New radiation phenomena in diverse solids such as local phase transitions, volume change, internal stress, etc. [6–8] are due to the high electronic excitation level. Such features of damage created under fast heavy ion irradiation were observed in LiF and some other ionic crystals (NaCl, NaF, CaF2). In these crystals the two different zones of damage are induced: in a cylindrical region of the radius of 1–2 nm the defect aggregates are dominating (aggregate damage zone), while in the more extended lateral track region (r > 2 nm, track halo), the point defects prevailed [8–10].

The Journal of Physical Chemistry B. 2006;110:13926-13930. 1021/jp061554c. [58] Crivoi A, Duan F. Effect of surfactant on the drying patterns of graphite nanofluid droplets. The Journal of Physical Chemistry B. 2013;117:5932-5938. 1021/jp401751z. [59] Brutin D. Influence of relative humidity and nano-particle concentration on pattern formation and evaporation rate of pinned drying drops of nanofluids. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2013;429:112-120. 1016/j. 012.

Figure 6. Schematic illustration on the generation of gold nanoparticles by photochemical and chemical reduction in GN2/AuCl4− complex film. In another research work, two luminol derivatives with different substituted chains (abbreviated as LC11 and TF46) were mixed with glycolipid compound GC11 to form monolayers at the air-water interface [22]. The pure and mixed interfacial Langmuir films were studied by measuring the surface pressure-molecular area isotherms, and their morphologies were 31 32 Advances in Colloid Science characterized by Brewster angle microscopy (BAM), as shown in Figure 7.

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