By Allen J. Bard, Larry R. Faulkner
This variation is absolutely revised to mirror the present country off the sector.
- Significant additions contain ultramicroelectrodes, changed electrodes, and scanning probe methods.
- Many chapters were changed and superior, together with electrode kinetics, voltammetric equipment, and mechanisms of coupled chemical reactions.
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Additional resources for Electrochemical methods. Fundamentals and applications
Effect of electrical and mechanical anharmonicity on vibrational spectra of H-bonded complexes phenol . . B (B=acetonitrile, pyridine) systems. J Mol Struct 448: 239–246, 1998. 29. D. L. Snavely, J. Dubsky. Near-infrared spectra of polyethylene, polyethylene glycol, and polyvinylethyl ether. J Polymer Sci A Polymer Chem 34: 2575–2579, 1996. 30. J. S. Wong, R. A. MacPhall, C. B. Moore , H. L. Strauss. Local mode spectra of inequivalent C-H oscillator in cycloalkanes and cycloalkenes. J Phys Chem 86: 1478–1484, 1982.
44. G. Lachenal. Structural investigations and monitoring of polymerisation by NIR spectroscopy. J Near Infrared Spectroscopy 6: 299–306, 1998. 45. I. M. Mills. Understanding spectra of highly excited vibrational states. In: Making Light Work: Advances in Near Infrared Spectroscopy. I. Murray and I Cowe, VCH, Weinheim, eds. 1992. 46. I. M. Min. Molecular Spectroscopy: Modern Research, vol 1, K. N. Rao, C. W. Matthews, eds. Academic Press, Boston, 115–140, 1972. 47. M. S. Child, L. Halonen. Overtone frequencies and intensities in the local mode picture.
These facts have practical importance. 3. Mid-infrared (A) and near-infrared (B) spectra of polyamides in function of temperature. Reproduced by permission from Ellis Horwood Limited. be seen at the fundamental level because of the weakness of the free band. There is a good chance to see it at the overtone level. This effect has been used to advantage in investigations on the structure of liquid water (101–103) and on the interactions between water and polymers (89–91). Numerous cases of Fermi and higher anharmonic resonances occur in the near infrared, leading to characteristic bands, useful for the chemical analysis of polymers.