Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

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Langmuir technology

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STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH

Transcript of Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

Page 1: Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

Langmuir technology

Page 2: Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

Langmuir technology

Page 3: Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

STM photo of Langmuir film of Stearic AcidC17H35COOH

Page 4: Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

Langmuir technology

Type of polymer

Area per monomeric chain containing cetyl-radical, A2

Area per general monomeric chain, A2

abPEI-12 alPEI-35 alPEI-70 abPEI-70 aP4VP-70

cLMMA-25 cLMMA-40 cLMMA-90

31.0 50.0 32.0 55.0 17.0 76.0 56.0 28.0

6.2 14.9 23.4 37.9 11.4 19.6 19.2 20.0

Page 5: Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

Schemas of STM and AFM a – scanning tunneling microscopyb – atomic force microscopy

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AFM images of Langmuir films of polymers

    

Langmuir film of antibodies with polymer PEI-R12 on graphite surface

Langmuir film of antibodies with polymer PEI-L70 on graphite surface. AFM image, size 2,6x2,6 μ.

Page 7: Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

AFM images of Langmuir films of polymers 

 

 

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a b

c d

AFM images of Langmuir films of polymer PEI-R12, size1,51,5 μ.

a – surface pressure by LB process í=10 mN/m, thickness of film 2,5 nm;

b – í=20 mN/m, thickness of film 3,5 nm;

c – í=30 mN/m, thickness of film 3,5 nm;

d – í=40 mN/m, thickness of film 3,5 nm.

Page 8: Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

AFM images of Langmuir films of polymers

 

AFM images of Langmuir films of polymer PEI-L70, size1,51,5 μ.

a – surface pressure by LB process í=10 mN/m, thickness of film 3,3 nm;

b – í=20 mN/m, thickness of film 4 nm;

c – í=30 mN/m, thickness of film 5,5 nm;

d – í=40 mN/m, thickness of film 6 nm.

a b

c d

Page 9: Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

STM images of DNA

DNA molecules on graphite surface 

Page 10: Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

AFM images of viruses

Sample of rotaviruses specific adsorbed on Langmuir film from antibodies with polymer PEI-R12. AFM image, 3D projection with highlight.

 Viruses of  Variolovaccine on mica surface

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Cells of Rickettsia bacterium C. burnetii (culture ”Yellow throat mouse -Luga”) on Langmuir film from antibodies with polymer PEI-L70. 3D projection with highlight.

 Cells of bacterium Rickettsia prowazekii (culture ”Breil”) on Langmuir film from antibodies with polymer PEI-R12. 3D projection with highlight. 

Cells of bacterium Rickettsia bacterium C. burnetii (culture ”M-44”) onmica. 3D projection with highlight.

AFM images of bacteriums

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Cells of bacterium Yersinia pestis (culture ”EB”) on Langmuir film from antibodies with polymer PEI-R12. 3D projection with highlight.

AFM images of bacteriums

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ASM images of Bacillus subtilis

   AFM images of bacteriums

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AFM images of bacteriums

ASM images of Staphylococcus aureus 209-P

 

Page 15: Langmuir technology. STM photo of Langmuir film of Stearic Acid C 17 H 35 COOH.

AFM images of bacteriums

Bacteriums Staphylococcus aureus on glass. ASM image with highlight.

     

Bacteriums Staphylococcus aureus, treated for 15 min by enzyme lysoamidaze. ASM image with highlight.

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Investigations of 2D crystalline films of ferritin

1- initial electronmicroscopic photo 2 - optical diffraction 3 - after Fourier filtration

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Investigations of 2D crystalline films of protein

Self-organized protein of S-layer of Bac.spaericus cell wall with tetragonal packing of sub-units. TEM, contrast by 1% uranyle-acetate.

1 - fragment EM photo,

2 - optical diffraction pattern,

3 - filtered image

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