All Issue

2020 Vol.29, Issue 1 Preview Page

Research Paper

29 February 2020. pp. 25-34
Abstract
References
1
King, W.H., 1971 : Vacuum Microbalance Techniques, pp.183, Plenum, New York.
10.1007/978-1-4757-0133-3_154252504
2
Nomura, T., Okuhara, M., 1982 : Frequency shifts of piezoelectric quartz crystals immersed in organic liquids, Anal. Chim. Acta, 142, pp.281-284.
10.1016/S0003-2670(01)95290-0
3
Kanazawa, K.K., Gordon II, J.G., 1985 : Frequency of a quartz microbalance in contact with liquid., Anal. Chem., 57, pp.1770-1771.
10.1021/ac00285a062
4
Bruckenstein, S., Shay, M., 1985 : Experimental aspects of use of the quartz crystal microbalance in solution. Electrochim. Acta, 30, pp.1295-1300.
10.1016/0013-4686(85)85005-2
5
Czanderna, A.W., Lu, C., 1984 : Introduction, history, and overview of applications of piezoelectric quartz crystal microbalances, Application of piezoelectric quartz crystal microbalances, pp.2-4, Elservier, New York.
10.1016/B978-0-444-42277-4.50007-7
6
Lu, C., 1984 : Theory and practice of the quartz crystal microbalance, Application of piezoelectric quartz crystal microbalances, pp.20-23, Elservier, New York.
10.1016/B978-0-444-42277-4.50008-9
7
Sauerbrey, G., 1959 : Verwendung von Schwingquarzen zur Wägung diinner Schichten und zur Mikrowägung, Zeitschrift fiir Physik, 55, pp.206-222.
10.1007/BF01337937
8
Srivastava, A.K., Sakthivel, P., 2001 : Quartz-crystal microbalance study for characterizing atomic oxygen in plasma ash tools, J. Vac. Sci. Technol. A, 19, pp.97-100.
10.1116/1.1335681
9
Deakin, M.R. Buttry, D.A., 1989 : Electrochemical Applications of the Quartz Crystal Microbalance, Anal. Chem., 61, pp.1147A-1154A.
10.1021/ac00195a001
10
Arnau, A., 2008 : A Review of Interface Electronic Systems for AT-cut Quartz Crystal Microbalance Applications in Liquids, Sensors, 8, pp.370-411
10.3390/s801037027879713PMC3681153
11
Lé T., et al., 2019 : Understanding the energy storage mechanisms of poly(3,4-ethylenedioxythiophene)-coated silicon nanowires by electrochemical quartz crystal microbalance, Mater. Lett., 240, pp.59-61.
10.1016/j.matlet.2018.12.119
12
Łukaszewski, M., Czerwiński, A., 2006 : Dissolution of noble metals and their alloys studied by electrochemical quartz crystal microbalance, J. Electroanal. Cheme., 589, pp.38-45.
10.1016/j.jelechem.2006.01.007
13
Fanta, A.B.S. et al., 2017 : Influence of Ti and Cr Adhesion Layers on Ultrathin Au Films, ACS Appl. Mater. Interfaces, 9, pp.37374-37385.
10.1021/acsami.7b1013628967257
14
Kim, M.S., Kim, K.B., 1997 : Electrochemical Quartz Crystal Microbalance, J. Corros. Sci. of Korea, 26, pp.312- 320.
15
Vatankhah, G., et al., 2003 : Dependence of the reliability of electrochemical quartz-crystal nanobalance mass responses on the calibration constant, Cf : analysis of three procedures for its determination, Electrochim. Acta, 48, pp.1613-1622.
10.1016/S0013-4686(03)00083-5
16
Bruckenstein, S., Shay, M., 1985 : Experimental aspects of use of the quartz crystal microbalance in solution, Electrochim. Acta, 30, pp.1295-1300.
10.1016/0013-4686(85)85005-2
17
Urbakh, M., Leonid Daikhin, L., 1994 : Roughness effect on the frequency of a quartz-crystal resonator in contact with a liquid, Phys. Rev. B, 49, pp.4866-4870.
10.1103/PhysRevB.49.486610011418
18
Rahtu, A., Mikko Ritala, M., 2002 : Compensation of temperature effects in quartz crystal microbalance measurements, Appl. Phys. Lett. 80, pp.521-523.
10.1063/1.1433904
19
Muramatsu, H., Tamiya, E., and Karube, I., 1988 : Computation of equivalent circuit parameters of quartz crystals in contact with liquids and study of liquid properties, Anal. Chem., 60, pp.2142-2146.
10.1021/ac00170a032
20
Rodahl, M., Kasemo, B., 1996 : Frequency and dissipation- factor responses to localized liquid deposits on a QCM electrode, Sensor. Actuat. B, 37, pp.111-116.
10.1016/S0925-4005(97)80077-9
21
Bai, Q., Huang, X., 2016 : Using Quartz Crystal Microbalance for Field Measurement of Liquid Viscosities, 2016, J. Sensors, pp.1-7.
10.1155/2016/7580483
22
Ullevlg, D.M., Evans, J.F., and Albrecht, M.G., 1982 : Effects of Stressed Materials on the Radial Sensitivity Function of a Quartz Crystal Microbalance, Anal. Chem., 54, pp.2341-2343.
10.1021/ac00250a045
23
EerNisse, E.P., 1973 : Extension of the double resonator technique, J. Appl. Phys., 44, pp.4482-4485.
10.1063/1.1661986
24
EerNisse, E.P., 1984 : Stress effects in quartz crystal microbalances, Application of piezoelectric quartz crystal microbalances, pp.125-149, Elservier, New York.
10.1016/B978-0-444-42277-4.50010-7
25
Aieta, E.M., Roberts, P.V., and Hernandez, M., 1984 : Determination of chlorine dioxide, chlorine, chlorite, and chlorate in water. Res Technol., pp.64-70.
10.1002/j.1551-8833.1984.tb05263.x
Information
  • Publisher :The Korean Institute of Resources Recycling
  • Publisher(Ko) :한국자원리싸이클링학회
  • Journal Title :Journal of the Korean Institute of Resources Recycling
  • Journal Title(Ko) :자원리싸이클링
  • Volume : 29
  • No :1
  • Pages :25-34
  • Received Date : 2019-10-10
  • Revised Date : 2019-11-28
  • Accepted Date : 2019-12-04