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New York iii

Refs. [i] Finston H, Rychtman AC (1982) A new view of current acid-base theories. Wiley New York [ii] Hand CW, BlewittHL (1986) Acid-base chemistry. Macmillan, New York [iii] Tanabe K (1989) New solid acids and bases. Elsevier, Amsterdam... [Pg.4]

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Refs. [i] Born M (1920) Z Phys 1 45 [ii] Marcus Y (1997) Ion properties. Marcel Dekker, New York [iii] Rashin AA, Honig B (1985) ] Phys Chem 89 5588 [iv] Stilly WC, TempczykA, Hawley RC, Hendrickson TA (1990) ] Am Chem Soc 112 6127 [v] Rashin AA (1990) / Phys Chem 94 1725 [vi] Shoichet BK, Leach AR, Kuntz ID (1999) Proteins 34 4 [vii] Marcus RA (1977) Theory and application of electron transfer at electrodes and in solutions. In Rock PA (ed) Special topics in electrochemistry. Elsevier, Amsterdam, pp 61 [viii] Millery C/ (1995) Heterogeneous electron transfer kinetics at metallic electrodes. In Rubinstein I (ed) Physical electrochemistry. Marcel Dekker, New York, pp 46-47... [Pg.56]

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Refs. [i] Heyrovsky I, Kuta ] (1966) Principles ofpolarography. Academic Press, New York [ii] Meites L (1965) Polarographic techniques, 2nd edn. Wiley Interscience, New York [iii] Galas Z (1994) Fundamentals of electrochemical analysis, 2nd edn. Ellis Harwood, New York, Polish Scientific Publisher PWN, Warsaw, [iv] Zuman P (1969) Elucidation of organic electrode processes. Academic Press, New York... [Pg.130]

Refs. [i] Kissinger PT, Heineman WR (1996) Laboratory techniques in electroanalytical chemistry, 2"d edn. MarcelDekker, New York [ii] Bard AJ, Faulkner LR (2001) Electrochemical methods, 2nd edn. Wiley, New York [iii] Bard AJ, Stratmann M, Unwin PR (eds) (2003) Instrumentation and electroanalytical chemistry. Encyclopedia of Electrochemistry, vol. 3. Wiley-VCH, Weinheim... [Pg.173]

Refs. [i] Zhao Q, Luo Y, Surthi S, Li Q, Mathur G, Gowda S, Larson PR, Johnson MB, Misra V (2005) Nanotechnology 16 257 [ii] Zhang XG (2001) Electrochemistry of silicon and its oxide. Plenum, New York [iii] ChemlaM (2006) Silicon. In BardAJ Stratman M, ScholzF, Pickett CJ (eds) Inorganic electrochemistry. Encyclopedia of electrochemistry, vol. 7a. Wiley-VCH, Weinheim, pp 303-332... [Pg.214]

Refs. [i] Barna A, PoratDl (1989) Operational amplifiers. Wiley, New York [ii] Malmstadt HV, Enke CG (1963) Electronics for scientists. WA Benjamin, New York [iii] Dolling R (1998) Mater Corros 49 535... [Pg.227]

Refs. [i] Frumkin A (1933) Z phys Chem A 164 121 [ii] Frumkin AN (1961) Hydrogen overvoltage and adsorption phenomena, part 1, mercury. In Delahay P (ed) Advances in electrochemistry and electrochemical engineering, vol 1. Interscience, New York [iii] Frumkin AN, Petrii OA, Nikolaeva-Ferdorovich NV (1963) Electrochim Acta 8 177 [iv] Frumkin AN, Nikolaeva-Fedorovich NV, Berezina NP, Keis KhE (1975) J Electroanal Chem 58 189 [v] Fawcett WR (1998) Double layer effects in the electrode kinetics of electron and ion transfer reactions. In Lipkowski J, RossPN (eds) Electrocatalysis. Wiley-VCH, New York, p 323... [Pg.285]

Refs. [i] Koryta J, Dvorak J, Kavan L (1993) Principles of electrochemistry. Wiley, Chichester [ii] Sawyer DT, Sobkowiak A, Roberts ]L Jr (1995) Electrochemistry for chemists. Wiley, New York [iii] Calvo EJ (1986) Fundamentals. The basics of electrode reactions. In Bamford CH, Compton RG (eds) Comprehensive chemical kinetics, vol. 26. Elsevier, Amsterdam, pp 1-78 [iv] Conway BE (1999) Electrochemical processes involving H adsorbed at metal electrode surfaces. In Wieckowski A (ed) Interfacial electrochemistry, theory, experiment, and applications. Marcel Dekker, New York, pp 131-150 [v] Savadogo O (1999) Synergetic effects of surface active sites on the hydrogen evolution reaction. In Wieckowski A (ed) Interfacial electrochemistry, theory, experiment, and applications. Marcel Dekker, New York, pp 915-935... [Pg.343]

The above formulas may become inapplicable for systems with adsorption processes or/and coupled chemical steps in solution whose characteristic times are comparable with the inverse frequency within the impedance measurement interval. In this case the charge-transfer resistance, Rct, must be replaced by a complex charge-transfer impedance, Zct. Another restriction of this treatment is its assumption of the uniform polarization of the m s interface which requires to ensure a highly symmetrical configuration of the system. Refs. [i] Sluyters-Rehbach M, Sluyters JH (1970) Sine wave methods in the study of electrode processes. In Bard A/ (ed) Electroanalytical chemistry, vol. 4. Marcel Dekker, New York, p 1 [ii] Bard A], Faulkner LR (2001) Electrochemical methods, 2nd edn. Wiley, New York [iii] Retter U, Lohse H (2005) Electrochemical impedance spectroscopy. In Scholz F (ed) Electroanalytical methods. Springer, Berlin, pp 149-166 [iv] Bar-soukov E, Macdonald JR (ed) (2005) Impedance spectroscopy. Wiley, Hoboken... [Pg.348]

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Refs. [i] Chapman Sf (2004) Electric machinery fundamentals, 4th edn. McGraw-Hill, New York [ii] Wiirfel P (2005) Physics of solar cells. Wiley-VCH, New York [iii] Linden D (1994) Handbook of batteries, 2 d edn. McGraw-Hill, New York, p 1.3-5.16 [iv] Turner WC (2004) Energy management handbook, 5th edn. CRC Press, Boca Raton, p 170-193... [Pg.547]

Refs. [i] Prigogine I-Autobiography http //nobelprize.org/chemistry/ laureates/1977/prigogine [ii] Prigogine I (1967) Introduction to the thermodynamics of irreversible processes. Wiley Interscience, New York [iii] Prigogine I (1962) Non-equilibrium statistical mechanics. Wiley Interscience, New York [iv] Glansdorff P, Prigogine I (1971) Thermodynamic theory of structure stability and fluctuations. Wiley, London... [Pg.550]

Refs. [i] Bell RP (1973) The proton in chemistry. Chapman and Hall, London [ii] Cohen A, Limbach HH (eds) (2005) Isotope effects in chemistry and biology. Marcel Dekker, New York [iii] EisenbergD, Kauzmann W (1969) The structure and properties of water. Clarendon, Oxford... [Pg.552]

Refs. [i] Bartlett PN, Birkin PR, Ghanem MA (2000) JChem Soc Chem Commun 1671 [ii] Martin CR, Mitchell DT (1999) Template-synthesized nanomaterials in electrochemistry. In Bard A], Rubinstein I (eds) Elec-troanalytical chemistry, vol. 21. Marcel Dekker, New York [iii] Hasse U, ScholzF (2006) J Solid State Electrochem 10 380... [Pg.666]

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References (i) Janz, G.J. (1967) Molten Salts Handbook. Academic Press, New York (ii) Lovering, D.G and Gale, R.J. (1983,1984, and 1990) Molten Salts Techniques, Vol. 1, 2, i and 4. Plenum Press, New York, (iii) Janz, G.J. (1988) Thermodynamic and Transport Properties for Molten Salts Correlation equations for critically evaluated density, surface tension, electrical conductance and viscosity data. Journal of Physical and Chemical Refrence Data. Vol. 17, Supplement 2, Published jointly by the American Chemical Society (ACS), the American Institute of Physics (AIP), and the National Bureau of Standards (NBS) and (iv) Barin, I., and Knacke, O. (1973) Thermodynamical Properties of Inorganic Substances. [Pg.1178]

Thorndike, L. A History of Magic and Experimental Science, 8 vols., London (i-ii) and New York (iii-viii), 1923-58. [Pg.9]


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