Transcript
Page 1: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Slides for PowerPoint:

Nonlinear and Two-Dimensional Spectroscopy

Andrei TokmakoffMIT Department of Chemistry

Page 2: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Complete Slides

Page 3: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Why 2D IR Spectroscopy?

• IR spectroscopy– IR probes vibrations intrinsic to all molecules– Each vibration gives different information

› Structure and dynamics– Intrinsic time-scale of ~1 ps

• 2D IR spectroscopy: A more sensitive probe– Characterize vibrational correlations

» Couplings, orientation, exchange

– Resolves congested spectra & suppresses inhomogeneous broadening

– Quantitative structure-based modeling

Page 4: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Fourier transform 2D IR spectroscopy

Page 5: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Ultrafast nonlinear spectroscopy

mask

Page 6: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Polarization-selective pump-probe experiment

Magic Angle: Vibrational Lifetime

Anisotropy: Reorientation

1T

|| ||r t S S S 2S

Page 7: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Peak Shift Measurement

ta – tb (fs)

Page 8: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

2D IR Interferometer

time/frequencydetection

time/timedetection

Page 9: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

2D IR Spectroscopy in pump-probe geometry

Page 10: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Obtaining an Absorptive 2D IR Spectrum

Page 11: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

2D IR spectroscopy

Frequency Fluctuations Vibrational Couplings Chemical Exchange

• Related to the joint probability

3,final 2 1,initialP , ;

2 = 0 2 > c

Page 12: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

• Excite: Initial frequency 1

• Wait for period 2

• Detect: Final frequency 3

Chemical exchange and spectral diffusion

2 = 0

2 →

Page 13: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

AbsorptiveCS

2D lineshapes: Loss of frequency correlation

Phase

a

b

Phase slope

Ellipticity

Page 14: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Extra Graphics

Page 15: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

2D Lineshapes

Page 16: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Rephasing and Non-rephasing

Page 17: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Rephasing and Non-rephasing

Page 18: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

2D IR Spectrum of RDC in Hexane

Page 19: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

2D IR Spectrum of RDC in Hexane

Page 20: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Polarization-Selective 2D IR Spectroscopy

Page 21: Slides for PowerPoint:  Nonlinear and  Two-Dimensional Spectroscopy

Projection Angle from Peak Amplitudes


Recommended