References
1. Fayer MD (2013) Ultrafast infrared vibrational spectroscopy. Ultrafast Infrared Vib Spectrosc.
doi:10.1201/b13972-2
2. Nibbering ETJ, Fidder H, Pines E (2005) ULTRAFAST CHEMISTRY: using time-resolved
vibrational spectroscopy for interrogation of structural dynamics. Annu Rev Phys Chem
56:337–367. doi:10.1146/annurev.physchem.56.092503.141314
3. Butler JM, George MW, Schoonover JR et al (2007) Application of transient infrared and near
infrared spectroscopy to transition metal complex excited states and intermediates. Coord Chem
Rev 251:492–514. doi:10.1016/j.ccr.2006.12.002
4. Tolstoij VP, Chernyshova IV, Skryshevsky VA (2003) Handbook of infrared spectroscopy of
ultrathin films. Wiley, Hoboken
5. Stuart B (2013) Infrared Spectrosc Fundam Appl. doi:10.1017/CBO9781107415324.004
6. Radu I, Schleeger M, Bolwien C, Heberle J (2009) Time-resolved methods in biophysics. 10. Timeresolved FT-IR difference spectroscopy and the application to membrane proteins. Photochem
Photobiol Sci 8:1517–1528. doi:10.1039/b9pp00050j
7. Ataka K, Kottke T, Heberle J (2010) Thinner, smaller, faster: IR techniques to probe the functionality of biological and biomimetic systems. Angew Chemie Int Ed 49:5416–5424. doi:10.1002/
anie.200907114
8. Nibbering ETJ, Elsaesser T (2004) Ultrafast vibrational dynamics of hydrogen bonds in the condensed phase. Chem Rev 104:1887–1914. doi:10.1021/cr020694p
9. Zaera F (2014) New advances in the use of infrared absorption spectroscopy for the characterization
of heterogeneous catalytic reactions. Chem Soc Rev 43:7624–7663. doi:10.1039/c3cs60374a
10. Hamm P, Zanni MT (2011) Concepts and methods of 2D infrared spectroscopy. Cambridge
University Press, New York
11. Hamm P (2009) For structural biology, try infrared instead. Structure 17:149–150. doi:10.1016/j.str.
2009.01.002
12. Hill JR, Dlott DD, Rella CW et al (1996) Ultrafast infrared spectroscopy in biomolecules: active site
dynamics of heme proteins. Biospectroscopy 2:277–299. doi:10.1002/(SICI)1520-6343(1996)2:53.
3.CO;2-4
13. Fayer MD (2001) Ultrafast infrared and Raman spectroscopy. CRC Press, Boca Raton
14. Cho M (2002) Ultrafast vibrational spectroscopy in condensed phases. PhysChemComm 5:40.
doi:10.1039/b110898k
15. Kraack JP, Hamm P (2016) Surface-sensitive and surface-specific ultrafast two-dimensional
vibrational spectroscopy. Chem Rev. doi:10.1021/acs.chemrev.6b00437
16. Hamm P, Lim M, Hochstrasser RM (1998) Structure of the amide I band of peptides measured by
femtosecond nonlinear-infrared spectroscopy. J Phys Chem B 102:6123–6138. doi:10.1021/
jp9813286
17. Abramavicius D, Palmieri B, Voronine DV et al (2009) Coherent multidimensional optical spectroscopy of excitons in molecular aggregates; quasiparticle versus supermolecule perspectives.
Chem Rev 109:2350–2408. doi:10.1021/cr800268n
18. Cho M (2008) Coherent two-dimensional optical spectroscopy. Chem Rev 108:1331–1418. doi:10.
1021/cr078377b
19. Simpson J (2008) Organic Structure Determination Using 2-D NMR Spectroscopy. Academic Press,
New York, Oxford
20. Jeener J, Meier BH, Bachmann P, Ernst RR (1979) Investigation of exchange processes by twodimensional NMR spectroscopy. J Chem Phys 71:4546–4553. doi:10.1063/1.438208
21. Brey WS (2012) Pulse methods in 1D & 2D liquid-phase NMR. Elsevier, New York
22. Friebolin H, Becconsall JK (1993) Basic one-and two-dimensional NMR spectroscopy. VCH,
Weinheim
23. Macura S, Ernst RR (1980) Elucidation of cross relaxation in liquids by two-dimensional N.M.R.
spectroscopy. Mol Phys 41:95–117. doi:10.1080/00268978000102601
24. Reppert M, Tokmakoff A (2016) Computational amide I 2D IR spectroscopy as a probe of protein
structure and dynamics. Annu Rev Phys Chem 67:359–386. doi:10.1146/annurev-physchem040215-112055
Top Curr Chem (Z) (2017) 375:86
123
189
Reprinted from the journal
1. Fayer MD (2013) Ultrafast infrared vibrational spectroscopy. Ultrafast Infrared Vib Spectrosc.
doi:10.1201/b13972-2
2. Nibbering ETJ, Fidder H, Pines E (2005) ULTRAFAST CHEMISTRY: using time-resolved
vibrational spectroscopy for interrogation of structural dynamics. Annu Rev Phys Chem
56:337–367. doi:10.1146/annurev.physchem.56.092503.141314
3. Butler JM, George MW, Schoonover JR et al (2007) Application of transient infrared and near
infrared spectroscopy to transition metal complex excited states and intermediates. Coord Chem
Rev 251:492–514. doi:10.1016/j.ccr.2006.12.002
4. Tolstoij VP, Chernyshova IV, Skryshevsky VA (2003) Handbook of infrared spectroscopy of
ultrathin films. Wiley, Hoboken
5. Stuart B (2013) Infrared Spectrosc Fundam Appl. doi:10.1017/CBO9781107415324.004
6. Radu I, Schleeger M, Bolwien C, Heberle J (2009) Time-resolved methods in biophysics. 10. Timeresolved FT-IR difference spectroscopy and the application to membrane proteins. Photochem
Photobiol Sci 8:1517–1528. doi:10.1039/b9pp00050j
7. Ataka K, Kottke T, Heberle J (2010) Thinner, smaller, faster: IR techniques to probe the functionality of biological and biomimetic systems. Angew Chemie Int Ed 49:5416–5424. doi:10.1002/
anie.200907114
8. Nibbering ETJ, Elsaesser T (2004) Ultrafast vibrational dynamics of hydrogen bonds in the condensed phase. Chem Rev 104:1887–1914. doi:10.1021/cr020694p
9. Zaera F (2014) New advances in the use of infrared absorption spectroscopy for the characterization
of heterogeneous catalytic reactions. Chem Soc Rev 43:7624–7663. doi:10.1039/c3cs60374a
10. Hamm P, Zanni MT (2011) Concepts and methods of 2D infrared spectroscopy. Cambridge
University Press, New York
11. Hamm P (2009) For structural biology, try infrared instead. Structure 17:149–150. doi:10.1016/j.str.
2009.01.002
12. Hill JR, Dlott DD, Rella CW et al (1996) Ultrafast infrared spectroscopy in biomolecules: active site
dynamics of heme proteins. Biospectroscopy 2:277–299. doi:10.1002/(SICI)1520-6343(1996)2:53.
3.CO;2-4
13. Fayer MD (2001) Ultrafast infrared and Raman spectroscopy. CRC Press, Boca Raton
14. Cho M (2002) Ultrafast vibrational spectroscopy in condensed phases. PhysChemComm 5:40.
doi:10.1039/b110898k
15. Kraack JP, Hamm P (2016) Surface-sensitive and surface-specific ultrafast two-dimensional
vibrational spectroscopy. Chem Rev. doi:10.1021/acs.chemrev.6b00437
16. Hamm P, Lim M, Hochstrasser RM (1998) Structure of the amide I band of peptides measured by
femtosecond nonlinear-infrared spectroscopy. J Phys Chem B 102:6123–6138. doi:10.1021/
jp9813286
17. Abramavicius D, Palmieri B, Voronine DV et al (2009) Coherent multidimensional optical spectroscopy of excitons in molecular aggregates; quasiparticle versus supermolecule perspectives.
Chem Rev 109:2350–2408. doi:10.1021/cr800268n
18. Cho M (2008) Coherent two-dimensional optical spectroscopy. Chem Rev 108:1331–1418. doi:10.
1021/cr078377b
19. Simpson J (2008) Organic Structure Determination Using 2-D NMR Spectroscopy. Academic Press,
New York, Oxford
20. Jeener J, Meier BH, Bachmann P, Ernst RR (1979) Investigation of exchange processes by twodimensional NMR spectroscopy. J Chem Phys 71:4546–4553. doi:10.1063/1.438208
21. Brey WS (2012) Pulse methods in 1D & 2D liquid-phase NMR. Elsevier, New York
22. Friebolin H, Becconsall JK (1993) Basic one-and two-dimensional NMR spectroscopy. VCH,
Weinheim
23. Macura S, Ernst RR (1980) Elucidation of cross relaxation in liquids by two-dimensional N.M.R.
spectroscopy. Mol Phys 41:95–117. doi:10.1080/00268978000102601
24. Reppert M, Tokmakoff A (2016) Computational amide I 2D IR spectroscopy as a probe of protein
structure and dynamics. Annu Rev Phys Chem 67:359–386. doi:10.1146/annurev-physchem040215-112055
Top Curr Chem (Z) (2017) 375:86
123
189
Reprinted from the journal
