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VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák
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VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Dec 24, 2015

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Page 1: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS

BY BREWSTER ANGLE MICROSCOPE

J. Cirák

Page 2: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

CONTENTS

• Langmuir monolayer at the air/water interface• Self-organization of molecules in 2D system (theory)• Brewster angle microscope• Maxwell displacement currents measurements

Page 3: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Langmuir monolayersmonomolecular insoluble layers of organic amphiphilic

molecules formed at the air/water interface during the self-organized process

• Systems for the study of self-organization in 2D with the possibility to control thermodynamic state quantities

• Formation of Langmuir-Blodgett layers on solid substrates• Study of chemical reactions in 2D molecular systems• Study of phenomena in biological membranes, phase

transitions, lipid – protein interactions• Study of interactions between a receptor and a target

molecule in biosensor

Page 4: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Langmuir trough

Page 5: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

p - A isotherm of an organic acid monolayer

Page 6: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Lateral domains in Langmuir monolayers

Self-organization in binary mixture of amphiphilic molecules at the air/water interface: TSAUG

2/14 nNEUUU Vhd

1ln!ln

!

!ln

/ nNkNk

n

NkSSS BBnNBhd

1ln4 2/1 nTNknNEG BV

2

2

Tk

En

B

V number of molecules in one circular domain

Page 7: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

p – A isotherm of pentadecanoic acid

GLELC/LE

LC

C

Page 8: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Van der Waals equation of 2D molecular system

surface pressure

Tkaaa

b

Tka

nRTA

B

B

02

2

0 a

b

aa

TkB

0 [mN/m]

Page 9: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

p – A isotherm of pentadecanoic acid

GLELC/LE

LC

C

Page 10: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.
Page 11: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Brewster angle microscopy

1 mN/m 5 mN/m

10 mN/m

Page 12: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

200 mm

Page 13: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Experimental study of physical properties of LB films

• Nanoelectric phenomena in Langmuir monolayer

Page 14: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Orientational order in the Langmuir film with Buckingham’s potential

Page 15: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Change in molecular conformation

Page 16: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Change in molecular orientantion

Page 17: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Change in molecular charge state

Page 18: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Current

Induced charge

Energy

Spatial averaged

Stat. mean value

Page 19: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.
Page 20: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Comparison of calculations using various standard potentials

Page 21: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

The effect of cluster size

Page 22: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Recordings of MDC signals obtained at three different rates of compression

Page 23: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

MDC signals replotted as the dependence I/b vs. area per molecule

Page 24: VISUALISATION OF DOMAINS IN 2D MOLECULAR SYSTEMS BY BREWSTER ANGLE MICROSCOPE J. Cirák.

Conclusions

In soft material science the interest is given to the system composed of several types of molecules where the molecular interactions play a key role in determining the resultant system properties. But the interactions depend on the way how the molecules are spontaneously organized in the system – depend on self-organization. From this point of view LB films can be regarded as an ideal technological tool for modeling basic physical processes in the system with molecular organization.