Quartz Crystal Microbalance (QCM) 您所在的位置:网站首页 A practical guide to quartz crystal microbalance Quartz Crystal Microbalance (QCM)

Quartz Crystal Microbalance (QCM)

2024-06-28 09:22| 来源: 网络整理| 查看: 265

[1]  C. Lu and A.W. Czanderna, Applications of Piezoelectric Quartz Crystal Microbalances, Elsevier Science Publishers B.V., Amsterdam, NL, 1984.[2]  G. Sauerbrey, Verwendung von Schwingquarzen zur Wägung dünner Schichten und zur Mikrowägung, Zeitschrift für Physik, 155 (2), 206-222 (1959).[3]  T. Nomura and A. Minemura, Behavior of a piezoelectric quartz crystal in an aqueous solution and the application to the determination of minute amount of cyanide, Nippon Kagaku Kaishi, 10, 1621-1625 (1980).[4]  M. Rodahl and B. Kasemo, A simple setup to simultaneously measure the resonant frequency and the absolute dissipation factor of a quartz crystal microbalance, Review of Scientific Instruments, 67 (9), 3238-3241 (1996).[5]  M.A. Cooper and V.T. Singleton, A survey of the 2001 to 2005 quartz crystal microbalance biosensor literature: applications of acoustic physics to the analysis of biomolecular interactions, Journal of Molecular Recognition, 20 (3), 154-184 (2007).[6]  M.C. Dixon, Quartz crystal microbalance with dissipation monitoring: enabling real-time characterization of biological materials and their interactions, Journal of Biomolecular Techniques, 19 (3), 151 (2008).[7]  P.L. Konash and G.J. Bastiaans, Piezoelectric crystals as detectors in liquid chromatography, Analytical Chemistry, 52 (12), 1929-1931 (1980).[8]  Y. Liu, A. Jaiswal, et al., Surface Plasmon Resonance and Quartz Crystal Microbalance Methods for Detection of Molecular Interactions, in Chemosensors: Principles, Strategies, and Applications. Wang B. and Anslyn E.V., (Eds), 2011.[9]  A. Janshoff, H.J. Galla, and C. Steinem, Piezoelectric mass-sensing devices as biosensors – An alternative to optical biosensors?, Angewandte Chemie-International Edition[10]  B. Becker and M.A. Cooper, A survey of the 2006-2009 quartz crystal microbalance biosensor literature, Journal of Molecular Recognition, 24 (5), 754-787 (2011).[11]  W.G. Cady, Piezoelectricity: an introduction to the theory and applications of electromechanical phenomena, Dover Publications, New York, USA, 1964.[12]  M.D. Ward and D.A. Buttry, In situ interfacial mass detection with piezoelectric transducers, Science, 249 (4972), 1000-1007 (1990).[13]  F. Lack, G. Willard, and I. Fair, Some improvements in quartz crystal circuit elements, Bell System Technical Journal, 13 (3), 453-463 (1934).[14]  L. Bradshaw, Understanding Piezoelectric Quartz Crystals, RF Design, 23, 50-59 (2000).[15]  “Quartz Crystal Microbalance Theory and Calibration.” http://www.thinksrs.com (accessed April).[16]  “RQCM- Research Quartz Crystal Microbalance: Operation and Service Manual,” Inficon; East Syracuse, NY, USA, 2007.[17]  V.E. Bottom, A history of the quartz crystal industry in the USA, Proceedings of the 35th Annual Frequency Control Symposium, 3-12 (1981).[18]  D. Sullivan, Time and frequency measurement at NIST: The first 100 years, Proceedings of the IEEE International Frequency Control Symposium and PDA Exhibition, 4-17 (2001).[19]  A.W. Warner and C.D. Stockbridge, Quartz Resonators; Reduction of Transient Frequency Excursion Due to Temperature Change, Journal of Applied Physics, 34 (2), 437-438 (1963).[20]  T. Nomura and O. Hattori, Determination of micromolar concentrations of cyanide in solution with a piezoelectric detector, Analytica Chimica Acta, 115, 323-326 (1980).[21]  D.A. Buttry and M.D. Ward, Measurement of interfacial processes at electrode surfaces with the electrochemical quartz crystal microbalance, Chemical Reviews, 92 (6), 1355-1379 (1992).[22]  J. Janata, Principles of chemical sensors, Plenum Press, New York, USA, 1989.[23]  A. Janshoff, J. Wegener, et al., Double-mode impedance analysis of epithelial cell monolayers cultured on shear wave resonators, European biophysics journal, 25 (2), 93-103 (1996).[24]  J. Wegener, J. Seebach, et al., Analysis of the composite response of shear wave resonators to the attachment of mammalian cells, Biophysical journal, 78 (6), 2821-2833 (2000).[25]  M.V. Voinova, M. Rodahl, et al., Viscoelastic Acoustic Response of Layered Polymer Films at Fluid-Solid Interfaces : Continuum Mechanics Approach, Physica Scripta, 59, 391-396 (1999).[26]  N.-J. Cho, C.W. Frank, et al., Quartz crystal microbalance with dissipation monitoring of supported lipid bilayers on various substrates, Nature Protocols, 5 (6), 1096-1106 (2010).[27]  I. Reviakine, D. Johannsmann, and R.P. Richter, Hearing What You Cannot See and Visualizing What You Hear : Interpreting quartz crystal microbalance data from solvated interfaces, Analytical Chemistry, 83, 8838-8848 (2011).[28]  V.E. Bottom, Introduction to quartz crystal unit design, Van Nostrand Reinhold, New York, USA, 1982.[29]  S. Bruckenstein, M. Michalski, et al., Dual Quartz Crystal Microbalance Oscillator Circuit. Minimizing Effects due to Liquid Viscosity, Density, and Temperature, Analytical Chemistry, 66 (11), 1847-1852 (1994).[30]  G.C. Dunham, N.H. Benson, et al., Dual Quartz Crystal Microbalance, Analytical Chemistry, 67 (2), 267-272 (1995).[31]  M. Rodahl, F. Höök, et al., Simultaneous frequency and dissipation factor QCM measurements of biomolecular adsorption and cell adhesion, Faraday Discussions, 107, 229-246 (1997).[32]  A. Domack, O. Prucker, et al., Swelling of a polymer brush probed with a quartz crystal resonator, Physical Review E, 56 (1), 680 (1997).



【本文地址】

公司简介

联系我们

今日新闻

    推荐新闻

    专题文章
      CopyRight 2018-2019 实验室设备网 版权所有