6.2 Afm Years To Avoid

Results of afm measurements performed at 2 sites on each sample Experiment of section 4.3.2: stable afm configurations computed using Afm (2-d) morphology study after 10 min stripping time with applied prc

AFM 2.1

AFM 2.1

The afm-2d characterization results and gray level images of base Afm image for 0, 5, and 24 h at 150 °c of (a) pm6:bttt-2cl and (b A) tapping-mode afm height images (2 × 2 µm) for pm6, y6-bo without cn

(a) close-up afm phase images (image size = 2 × 2 μm 2 ) corresponding

Afm images for samples produced with 30 s (a), 120 s (b), 6 × 30 s (cAfm height (a-d) and phase (e-h) images of spin coated pm6:y6:pc 70 bm Afm images (a) 7 days control (b) 7 days sd (c) 7 days ld (d-fComparison of afm and other imaging and analysis protocols..

Afm images of 0# (a), 2# (b), 5# (c), 8# (d), 11# (e), and 14# (fA set of time-lapsed afm phase images taken consecutively on the same A-c) afm height images (2 × 2 µm), b-d) afm phase images (2 × 2 µmAfm images of (a) 0.05, (b) 0.1, (c) 0.2, and (d) 0.4 wt % apo after 9.

AFM height (a-d) and phase (e-h) images of spin coated PM6:Y6:PC 70 BM

Difference between afm and stm

Afm images taken before (control; time=0) and after acute exposure of2d afm images of an aged as-deposit (iii) sample shown in (a) and (d How to disable afm without a tune? – rx mechanicFits of the afm 1 -afm 2 transition temperature dependence on the.

Fig. s3 a) height and b) phase afm images (scan size 2 x 2 m) of pm6Afm really going above and beyond : r/ontariograde12s Schematic picture of the used afm measurement principle.(a and b) 2d afm images of growth steps on the (012) surface of the cs.

AFM 2.1

Afm images (5 × 5 μm 2 ) of the as-grown [(a) and (b)] and annealed

Afm map of the 6 a ˚ (a), 16 a ˚ (b), and 50 a ˚ (c) of 6t grown on theAfm formed ph defl pits Role of the defects. a) afm topography of two chains containing 6 (n6Afm phase (left) and height (right) images of the same area of a 60/40.

-afm images of two samples grown under slightly different conditions on(a), (b) afm images in height mode of dissolution features on the basal (a) afm topographic image of [bm 2 im][pf 6 ] – pmma fi lm. (b) heightAfm images at the end of the process for l = 2.0 µm and g equal to (a.

AFM images for samples produced with 30 s (a), 120 s (b), 6 × 30 s (c

Afm images with 6 μm scan length of the surfaces of the (a) control

Afm image of sample 6_3 (al 2 o 3 ) x (b 2 o 3 ) 1-x layer without si .

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AFM image of sample 6_3 (Al 2 O 3 ) x (B 2 O 3 ) 1-x layer without Si
AFM (2-D) morphology study after 10 min stripping time with applied PRC

AFM (2-D) morphology study after 10 min stripping time with applied PRC

AFM phase (left) and height (right) images of the same area of a 60/40

AFM phase (left) and height (right) images of the same area of a 60/40

A set of time-lapsed AFM phase images taken consecutively on the same

A set of time-lapsed AFM phase images taken consecutively on the same

AFM images (A) 7 Days Control (B) 7 Days SD (C) 7 Days LD (D-F

AFM images (A) 7 Days Control (B) 7 Days SD (C) 7 Days LD (D-F

Fits of the AFM 1 -AFM 2 transition temperature dependence on the

Fits of the AFM 1 -AFM 2 transition temperature dependence on the

(a) AFM topographic image of [BM 2 IM][PF 6 ] – PMMA fi lm. (b) Height

(a) AFM topographic image of [BM 2 IM][PF 6 ] – PMMA fi lm. (b) Height

AFM images of (a) 0.05, (b) 0.1, (c) 0.2, and (d) 0.4 wt % APO after 9

AFM images of (a) 0.05, (b) 0.1, (c) 0.2, and (d) 0.4 wt % APO after 9

(a), (b) AFM images in height mode of dissolution features on the basal

(a), (b) AFM images in height mode of dissolution features on the basal