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INFICON RQCM - Quartz Crystal Microbalance Research System User Manual

Page 101

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RQCM – RESEARCH QUARTZ CRYSTAL MICROBALANCE

REFERENCES

12-3

34

Youngran Lim and Euijin Hwang, “An Electrochemical QCM study of Oxygen reduction

during the Underpotential Deposition of Lead on a Gold Electrode”, Bull. Korean Chem Soc. 17

(12) (1996) 1091.

34

Storri, S, Santoni, T., Mascini, M.,”A piezoelectric biosensor for DNA hybridization

detection”, Anal. Lett. 31 (11) (1998) 1795.

35

Jope, Dirk,Sell, Joachim, Pickering, Howard W.,Weil, Konrad G., “Application of a Quartz

Crystal Microbalance to the Study of Copper Corrosion in Acid Solution Inhibited by Triazole-

Iodide Protective Films”, J. Electrochem. Soc., (142) 34881, 2170-2172.

36

Jiang, Xiang Chun,Seo, Masahiro,Sato, Norio, “Piezoelectric Detection of Oxide Formation

and Reduction on Platinum Electrodes”, J. Electrochem. Soc., (138) 33239, 137-139.

37

Benje, Michael, Eierman, Matthias, Pittermann, Udo, Weil, Konrad G., “An Improved Quartz

Crystal Microbalance. Applications to the Electrocrystallization and -dissolution of Nickel”, Ber.

Bunsen-Ges. Phys. Chem., 90 (1986) 435-439.

38

Tudos, Anna J., Johnson, Dennis C., “Dissolution of Gold Electrodes in Alkanine Media

Containing Cysteine”, Anal. Chem., 67 (1995) 557-560.

39

Schumacher, R., Muller, A., Stockel, W., “An In Situ Study on the Mechanism of the

Electrochemical Dissolution of Copper in Oxygenated Sulphuric Acid - An Application of the

Quartz Microbalance”, J. Electroanal. Chem. Interfacial Electrochem., 219 (1987) 311-317.

40

Ostrom, Gregory S., Buttry, Daniel A., “Quartz crystal microbalance studies of deposition and

dissolution mechanisms of electrochromic films of diheptylviologen bromide”, J. Electroanal.

Chem. Interfacial Electrochem., 256 (1988) 411-431.

41

Auge, Jorg, Hauptmann, Peter, Eichelbaum, Frank and Rosler, Stephen, “QCM sensor in

liquids”, Sensors and Actuators B, 18-19 (1994) 518.

42

Mo, Yibo, Hwang, Euijin, Scherson, Daniel A., “Simultaneous Normalized Optical Reflectivity

and Microgravimetric Measurements at Electrode/Electrolyte Interfaces: The Adsorption of

Bromide on Gold in Aqueous Media”, 67 (1995) 2415-2418.

43

Schneider, Thomas W., Buttry, Daniel A., “Electrochemical Quartz Crystal Microbalance

Studies of Adsorption and Desorption of Self-Assembled Monolayers of Alkyl Thiols on Gold”,

J. Am. Chem. Soc., 115 (1993) 12391-12397.

44

Bott, Adrian W., “Characterization of Films Immobilized on an Electrode Surface Using the

EQCM”, Current Separations 18:3 (1999) 79.

45

Stockel, Wolfgang and Schumacher, Rolf, “In situ Microweighing at the Junction

Metal/Electrolyte”, Ber. Bunsenges. Phys. Chem. 91(1987) 345.

46

Gabrielli, C., Keddam, M., and Torrei, R., “Calibration of the Electrochemical Quartz Crystal

Microbalance”, J. Electrochem. Soc. 139 (9) (1991) 2657.

47

Graeme Andrew Snook, "Investigation of Solid-State Reactions by Electrochemical and Quartz

Crystal Microbalance Measurements" Ph.D. Thesis, 2000, Department of Chemistry, Monash

University, Clayton 3168, Melbourne, Australia and Division of Minerals, CSIRO, Clayton South

3169 Melbourne, Australia, under the supervision of Professor Alan Maxwell Bond (Monash) and

Professor Stephen Fletcher (CSIRO). Available for download from:

http://www.bond.chem.monash.edu.au/theses/

48

Bruckenstein S. and Shay M., “Experimental aspects of use of the quartz crystal microbalance

in solution”, Electrochim. Acta 30 (1985) 1295.