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Tapping mode atomic force microscopy phase images

Fig. 7 Typical tapping mode atomic force microscopy phase images from a thin diblock copolymer film PBh-PEO(3.7-1.1) showing the evolution of the pattern during annealing at 180 °C. Annealing time for A and B 5 min, C 30min, and D 120 min. The insets gives the corresponding Fourier transforms. The size of the images B, C and D is 1 x 1 p.m. Image (A) is a zoom-in on (B) with the size of 300 x 300 nm ... Fig. 7 Typical tapping mode atomic force microscopy phase images from a thin diblock copolymer film PBh-PEO(3.7-1.1) showing the evolution of the pattern during annealing at 180 °C. Annealing time for A and B 5 min, C 30min, and D 120 min. The insets gives the corresponding Fourier transforms. The size of the images B, C and D is 1 x 1 p.m. Image (A) is a zoom-in on (B) with the size of 300 x 300 nm ...
Brandsch, R., Bar, G., and Whangbo, M.-H. 1997. On the factors affecting the contrast of height and phase images in tapping mode atomic force microscopy, Langmuir 13,6349-6353. [Pg.367]

Figure 2.15 Tapping mode atomic force microscopy (TMAFM) phase images of poly(3-hexylthiophene) diblock copolymers (scan size 2x2 iu.m) (a) poly(3-hexylthiophene)-b-poly(methyl methacrylate) (15 mol % PHT) (b) poly(3-hexylthlophene)-b-poly(isobornyl methacrylate) (15 mol% PHT) (c) poly(3-hexylthiophene) b-poly(t-butyl methacrylate) (60 mol % PHT) (d) poly(3-hexylthiophene)-b-poly(t-butyl methacrylate) (15 mol % PHT)... Figure 2.15 Tapping mode atomic force microscopy (TMAFM) phase images of poly(3-hexylthiophene) diblock copolymers (scan size 2x2 iu.m) (a) poly(3-hexylthiophene)-b-poly(methyl methacrylate) (15 mol % PHT) (b) poly(3-hexylthlophene)-b-poly(isobornyl methacrylate) (15 mol% PHT) (c) poly(3-hexylthiophene) b-poly(t-butyl methacrylate) (60 mol % PHT) (d) poly(3-hexylthiophene)-b-poly(t-butyl methacrylate) (15 mol % PHT)...
M. Stark, C. Moller, D. J. Muller, and R. Guckenberger, From Images to interactions high-resolution phase imaging in tapping-mode atomic force microscopy, Biophys.], 80, 3009-3018 (2001]. [Pg.677]

S. N. Magonov, V. ERngs, M.-H. Whangbo, Phase-imaging and stiffness in tapping-mode atomic force microscopy. Surf. Sci 375(2/3), L385 (1997). [Pg.156]

Figure 4.3 Tapping mode atomic force microscopy height (a) and phase (b) images of UHMWPE with silver nanoparticles deposited. The images were collected from a cryomicrotomed surface the crystalline... Figure 4.3 Tapping mode atomic force microscopy height (a) and phase (b) images of UHMWPE with silver nanoparticles deposited. The images were collected from a cryomicrotomed surface the crystalline...
Fig. 5. Hexagonal and stripe patterns observed via atomic force microscopy (Tapping Mode). Phase contrast images of (a) polystyrene-fe-poly(ethylene-co-butylene)-6-polystyrene, Kraton G1657 and (b) Kraton G1650 (82). Fig. 5. Hexagonal and stripe patterns observed via atomic force microscopy (Tapping Mode). Phase contrast images of (a) polystyrene-fe-poly(ethylene-co-butylene)-6-polystyrene, Kraton G1657 and (b) Kraton G1650 (82).

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Atom Force Microscopy

Atomic force microscopy

Atomic force microscopy imaging

Atomic force microscopy imaging modes

Atomic force microscopy phase-imaging

Atomic force microscopy tapping mode

Atomic imaging

Atomic phase image

Atomic phase imaging

Atomic tapping mode

Atoms images

Image Modes

Image force

Imaging force

Imaging modes

Microscopy image

Microscopy imaging

Phase images

Phase imaging

TAP

Tapping

Tapping mode

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