Sentence examples for placement of nanoparticles from inspiring English sources

Exact(6)

Scanning electron microscopy (SEM) images indicate dimorphous placement of nanoparticles.

In addition, precision placement of nanoparticles utilizing polymer micelles via template-assisted placement will be presented.

The positively charged PMMA patterns worked as electrostatic lenses and guided the positively charged silver nanoparticles away from the PMMA patterns, leading to focused placement of nanoparticles.

Polymer micelles containing nanoparticles in their cores can be used for high precision placement of nanoparticles when combined with template-assisted placement schemes described earlier.

Alivisatos and co-workers showed that the capillary forces are still effective for the placement of nanoparticles below 50 nm [17].

In contrast to even simpler models (e.g., random placement of nanoparticles on substrate), it can include the nanoparticle self-organization effects, which are important phenomena affecting nanoparticle analysis in scanning probe microscopy as seen in Figure 1c-d.

Similar(54)

(B) Zero-dimensional placement of individual nanoparticles (∼20 nm diameter) onto the square-shaped pattern.

They demonstrated placement of Au nanoparticles (diameter 17 nm or 2 6 nm) onto the amine terminated patterns, forming 2D square arrays, letters, and more complex nanoarchitecture, Fig. 7C. Figure 7 Fabrication of a nanoarchitecture made of 2 6 nm Au nanoparticles selectively attached onto patterned SAMs.

Figure 12 shows controlled placement of thiol-terminated 5 nm Au nanoparticles that are selectively adsorbed onto negatively charged line patterns with ∼30 nm resolution.

This procedure provides a facile technique to control the polarity and hydrophilicity of metal nanoparticle surfaces and could prove critical in advancing the control of nanoparticle placement in biological and hierarchically ordered systems, such as diblock copolymers.

A simple fabrication method using maskless etching has been demonstrated to generate collapsible silicon pillars, but random placement of the pillars leads to suboptimal nanoparticle geometry [66].

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