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331. Lessinger L (1994) Morse oscillators, Birge–Sponer extrapolation, and the electronic absorption
spectrum of I2. J Chem Educ 71:388. doi:10.1021/ed071p388
332. Luo Y-R (2007) Comprehensive handbook of chemical bond energies. CRC Press, Boca Raton
333. Huber CJ, Egger SM, Spector IC et al (2015) 2D-IR spectroscopy of porous silica nanoparticles:
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334. Wohlleben W, Buckup T, Herek JL, Motzkus M (2005) Coherent control for spectroscopy and
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337. Buckup T, Hauer J, Mohring J, Motzkus M (2009) Multidimensional spectroscopy of beta-carotene:
vibrational cooling in the excited state. Arch Biochem Biophys 483:219–223
338. Prokhorenko VI, Nagy AM, Waschuk SA et al (2006) Coherent control of retinal isomerization in
bacteriorhodopsin. Science (80-) 313:1257–1261. doi:10.1126/science.1130747
339. Kraack JP, Motzkus M, Buckup T (2011) Selective nonlinear response preparation using femtosecond spectrally resolved four-wave-mixing. J Chem Phys 135:224505
340. Windhorn L, Yeston JS, Witte T et al (2003) Getting ahead of IVR: a demonstration of mid-infrared
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1063/1.1587696
341. Shim S-H, Strasfeld DB, Fulmer EC, Zanni MT (2006) Femtosecond pulse shaping directly in the
mid-IR using acousto-optic modulation. Opt Lett 31:838–840. doi:10.1364/OL.31.000838
342. Shim S-H, Strasfeld DB, Zanni MT (2006) Generation and characterization of phase and amplitude
shaped femtosecond mid-IR pulses. Opt Express 14:13120–13130. doi:10.1364/UP.2010.TuE28
343. Witte T, Kompa KL, Motzkus M (2003) Femtosecond pulse shaping in the mid infrared by difference-frequency mixing. Appl Phys B Lasers Opt 76:467–471. doi:10.1007/s00340-003-1118-6
344. Middleton CT, Strasfeld DB, Zanni MT (2009) Polarization shaping in the mid-IR and polarizationbased balanced heterodyne detection with application to 2D IR spectroscopy. Opt Express
17:14526–14533. doi:10.1364/OE.17.014526
345. Strasfeld DB, Middleton CT, Zanni MT (2009) Mode selectivity with polarization shaping in the
mid-IR. New J Phys. doi:10.1088/1367-2630/11/10/105046
346. Jiang X, Zaitseva E, Schmidt M et al (2008) Resolving voltage-dependent structural changes of a
membrane photoreceptor by surface-enhanced IR difference spectroscopy. Proc Natl Acad Sci USA
105:12113–12117. doi:10.1073/pnas.0802289105
347. Dennis AM, Delehanty JB, Medintz IL (2016) Emerging physicochemical phenomena along with
new opportunities at the biomolecular-nanoparticle interface. J Phys Chem Lett 7:2139–2150.
doi:10.1021/acs.jpclett.6b00570
348. Howes PD, Rana S, Stevens MM (2014) Plasmonic nanomaterials for biodiagnostics. Chem Soc
Rev 43:3835–3853. doi:10.1039/c3cs60346f
349. Samanta D, Sarkar A (2011) Immobilization of bio-macromolecules on self-assembled monolayers:
methods and sensor applications. Chem Soc Rev 40:2567–2592. doi:10.1039/c0cs00056f
350. Anker JN, Hall WP, Lyandres O et al (2008) Biosensing with plasmonic nanosensors. Nat Mater
7:442–453. doi:10.1038/nmat2162
351. Leblanc RM (2006) Molecular recognition at Langmuir monolayers. Curr Opin Chem Biol
10:529–536. doi:10.1016/j.cbpa.2006.09.010
352. Spinke J, Liley M, Angermaierj HGL, Knoll W (1993) Molecular recognition at self -assembled
monolayers : the construction of multicomponent multilayers. Langmuir 9:1821–1825. doi:10.1021/
la00031a033
353. Zhang X, Yadavalli VK (2012) Functional self-assembled DNA nanostructures for molecular
recognition. Nanoscale 4:2439–2446. doi:10.1039/c2nr11711h
Top Curr Chem (Z) (2017) 375:86
123
203
Reprinted from the journal
excited molecules. Faraday Discuss Chem Soc 67:146–161. doi:10.1039/DC9796700146
330. Enders D, Nagao T, Pucci A et al (2011) Surface-enhanced ATR-IR spectroscopy with interfacegrown plasmonic gold-island films near the percolation threshold. Phys Chem Chem Phys
13:4935–4941. doi:10.1039/c0cp01450h
331. Lessinger L (1994) Morse oscillators, Birge–Sponer extrapolation, and the electronic absorption
spectrum of I2. J Chem Educ 71:388. doi:10.1021/ed071p388
332. Luo Y-R (2007) Comprehensive handbook of chemical bond energies. CRC Press, Boca Raton
333. Huber CJ, Egger SM, Spector IC et al (2015) 2D-IR spectroscopy of porous silica nanoparticles:
measuring the distance sensitivity of spectral diffusion. J Phys Chem C 119:25135–25144. doi:10.
1021/acs.jpcc.5b05637
334. Wohlleben W, Buckup T, Herek JL, Motzkus M (2005) Coherent control for spectroscopy and
manipulation of biological dynamics. ChemPhysChem 6:850–857
335. Herek JL, Wohlleben W, Cogdell RJ et al (2002) Quantum control of energy flow in light harvesting. Nature 417:533–535
336. Prokhorenko VI, Halpin A, Miller RJD (2011) Coherently-controlled two-dimensional spectroscopy: evidence for phase induced long-lived memory effects. Faraday Discuss 153:27–39.
doi:10.1039/c1fd00095k
337. Buckup T, Hauer J, Mohring J, Motzkus M (2009) Multidimensional spectroscopy of beta-carotene:
vibrational cooling in the excited state. Arch Biochem Biophys 483:219–223
338. Prokhorenko VI, Nagy AM, Waschuk SA et al (2006) Coherent control of retinal isomerization in
bacteriorhodopsin. Science (80-) 313:1257–1261. doi:10.1126/science.1130747
339. Kraack JP, Motzkus M, Buckup T (2011) Selective nonlinear response preparation using femtosecond spectrally resolved four-wave-mixing. J Chem Phys 135:224505
340. Windhorn L, Yeston JS, Witte T et al (2003) Getting ahead of IVR: a demonstration of mid-infrared
induced molecular dissociation on a sub-statistical time scale. J Chem Phys 119:641–645. doi:10.
1063/1.1587696
341. Shim S-H, Strasfeld DB, Fulmer EC, Zanni MT (2006) Femtosecond pulse shaping directly in the
mid-IR using acousto-optic modulation. Opt Lett 31:838–840. doi:10.1364/OL.31.000838
342. Shim S-H, Strasfeld DB, Zanni MT (2006) Generation and characterization of phase and amplitude
shaped femtosecond mid-IR pulses. Opt Express 14:13120–13130. doi:10.1364/UP.2010.TuE28
343. Witte T, Kompa KL, Motzkus M (2003) Femtosecond pulse shaping in the mid infrared by difference-frequency mixing. Appl Phys B Lasers Opt 76:467–471. doi:10.1007/s00340-003-1118-6
344. Middleton CT, Strasfeld DB, Zanni MT (2009) Polarization shaping in the mid-IR and polarizationbased balanced heterodyne detection with application to 2D IR spectroscopy. Opt Express
17:14526–14533. doi:10.1364/OE.17.014526
345. Strasfeld DB, Middleton CT, Zanni MT (2009) Mode selectivity with polarization shaping in the
mid-IR. New J Phys. doi:10.1088/1367-2630/11/10/105046
346. Jiang X, Zaitseva E, Schmidt M et al (2008) Resolving voltage-dependent structural changes of a
membrane photoreceptor by surface-enhanced IR difference spectroscopy. Proc Natl Acad Sci USA
105:12113–12117. doi:10.1073/pnas.0802289105
347. Dennis AM, Delehanty JB, Medintz IL (2016) Emerging physicochemical phenomena along with
new opportunities at the biomolecular-nanoparticle interface. J Phys Chem Lett 7:2139–2150.
doi:10.1021/acs.jpclett.6b00570
348. Howes PD, Rana S, Stevens MM (2014) Plasmonic nanomaterials for biodiagnostics. Chem Soc
Rev 43:3835–3853. doi:10.1039/c3cs60346f
349. Samanta D, Sarkar A (2011) Immobilization of bio-macromolecules on self-assembled monolayers:
methods and sensor applications. Chem Soc Rev 40:2567–2592. doi:10.1039/c0cs00056f
350. Anker JN, Hall WP, Lyandres O et al (2008) Biosensing with plasmonic nanosensors. Nat Mater
7:442–453. doi:10.1038/nmat2162
351. Leblanc RM (2006) Molecular recognition at Langmuir monolayers. Curr Opin Chem Biol
10:529–536. doi:10.1016/j.cbpa.2006.09.010
352. Spinke J, Liley M, Angermaierj HGL, Knoll W (1993) Molecular recognition at self -assembled
monolayers : the construction of multicomponent multilayers. Langmuir 9:1821–1825. doi:10.1021/
la00031a033
353. Zhang X, Yadavalli VK (2012) Functional self-assembled DNA nanostructures for molecular
recognition. Nanoscale 4:2439–2446. doi:10.1039/c2nr11711h
Top Curr Chem (Z) (2017) 375:86
123
203
Reprinted from the journal
