1 3
Topics in Current Chemistry (2019) 377:11
44. Bewick A, Kunimatsu K, Pons BS, Russell JW (1984) Electrochemically modulated infrared spectroscopy (EMIRS) experimental details. J Electroanal Chem 160:47–61
45. Davidson T, Pons BS, Bewick A, Schmidt PP (1981) Vibrational spectroscopy of the electrode/electrolyte interface. Use of Fourier transform infrared spectroscopy. J Electroanal Chem
125:237–241
46. Pons S, Davidson T, Bewick A (1983) Vibrational spectroscopy of the electrode–solution interface. 2. Use of Fourier transform spectroscopy for recording infrared spectra of radical ion
intermediates. J Am Chem Soc 105:1802–1805
47. Russel JW, Overend J, Scanlon K, Severson M, Bewick A (1982) Infrared spectrum of carbon
monoxide on a platinum electrode in acidic solution. J Phys Chem 86:3066–3068
48. Pons S (1983) The use of Fourier transform infrared spectroscopy for in situ recording of species in the electrode–electrolyte solution interphase. J Electroanal Chem 150:495–504
49. Corrigan DS, Leung LWH, Weaver MJ (1987) Single potential-alteration surface infrared spectroscopy: examination of absorbed species involved in irreversible electrode reactions. Anal
Chem 59:2252–2256
50. Hipps KW, Crosby GA (1979) Applications of the photoelastic modulator to polarization spectroscopy. J Phys Chem 83:555–562
51. Golden WG, Kunimatsu K, Seki H (1984) Application of polarization-modulated Fourier transform infrared reflection–absorption spectroscopy to the study of carbon monoxide adsorption
and oxidation of a smooth platinum electrode. J Phys Chem 88:1275–1277
52. Seki H, Kunimatsu K, Golden WG (1985) A thin-layer electrochemical cell for infrared spectroscopic measurements of the electrode/electrolyte interface. Appl Spectrosc 39:437–443
53. Golden WG, Saperstein DD, Severson MW, Overend J (1984) Infrared reflection–absorption
spectroscopy of surface species: a comparison of Fourier transform and dispersion methods. J
Phys Chem 88:574–580
54. Iwasita T, Nart FC (1997) In situ infrared spectroscopy at electrochemical interfaces. Prog Surf
Sci 55:271–340
55. Faguy PW, Marinkovic NS (1996) Design and performance of a new infrared reflection accessory for spectroelectrochemical studies. Appl Spectrosc 50:394–400
56. Otto A (1968) A new method for exciting non-radioactive surface plasma oscillations. Phys Stat
Sol 26:K99–K101
57. Mirabella FM (1993) History of internal reflection spectroscopy. In: Mirabella FM (ed) Internal
reflection spectroscopy: theory and applications. Marcel Dekker, New York, pp 1–15
58. Marinkovic NS (2018) Optimization of in situ infrared spectro-electrochemical accessory with
the aid of reflectance and electric field calculations. Zast Mater 59:273–281
59. http://refra ctive index .info/?shelf =main&book=H2O&page=Hale.
https ://refra ctive index
.info/?shelf =main&book=ZnSe&page=Querr y. Accessed 30 Mar 2019
60. Kretschmann E, Reather H (1968) Radiative decay of non-radiative surface plasmons excited by
light. Z Naturf 23:2135–2136
61. Hartstein A, Kirtley JR, Tsang JT (1980) Enhancement of the infrared absorption from molecular monolayers with thin metal overlayers. Phys Rev Lett 45:201
62. Hatta A, Chiba Y, Suetaka W (1985) Infrared absorption study of adsorbed species at metal/
water interface by use of the Kretschmann configuration. Surf Sci 158:616–623
63. Osawa M, Kuramitsu M, Hatta A, Suetaka W, Seki H (1986) Electromagnetic effect in enhanced
infrared absorption of adsorbed molecules on thin metal films. Surf Sci 175:L787–L793
64. Hansen PW (1968) Electric fields produced by the propagation of plane coherent electromagnetic radiation in a stratified medium. J Opt Soc Am 58:380–390
65. Marinkovic NS (2018) Optimization of in situ infrared spectro-electrochemical accessory with
the aid of reflectance and electric field and calculations. Zast Mater 59(2):273–281
66. Marinkovic NS (2019) (To be submitted)
67. Faguy PW, Marinkovic NS (1995) Sensitivity and reproducibility in infrared spectroscopic
measurements at single-crystal electrode surfaces. Anal Chem 67:2791–2799
68. Faguy PW, Marinkovic NS, Adzic RR (1996) An in situ infrared study on the effect of pH on
anion adsorption at Pt(111) electrodes from acid sulfate solutions. Langmuir 12:243–247
69. Faguy PW, Marinkovic NS, Adzic RR (1996) Infrared spectroscopic analysis of anions adsorbed
from bisulfate-containing solutions on Pt(111) electrodes. J Electroanal Chem 407:209–218
70. Bunker G (2010) Introduction to XAFS: a practical guide to X-ray absorption fine structure
spectroscopy. Cambridge University Press, Cambridge
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