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Articles

Detection of some volatile organic compounds with chitosan-coated quartz crystal microbalance

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Pages 795-802 | Received 01 Mar 2014, Accepted 06 Apr 2014, Published online: 21 May 2014

References

  • Schierbaum KD, Gerlach A, Haug M, Göpel W. Selective detection of organic molecules with polymers and supramolecular compounds: application of capacitance, quartz microbalance and calorimetric transducers. Sens. Actuators A. 1992;31:130–137.10.1016/0924-4247(92)80092-H
  • Nell P, Dalcanale E, Faglia G, Sberveglieri G, Soncini P. Cavitands as selective materials for QMB sensors for nitrobenzene and other aromatic vapours. Sens. Actuators B. 1993;13:302–304.10.1016/0925-4005(93)85386-O
  • Battenberg A, Breidt VF, Vahrenkamp H. Synthesis and test of organometallic materials as sensitive layers on quartz microbalance devices. Sens. Actuators B. 1996;30:29–34.10.1016/0925-4005(95)01731-A
  • Dickert FL, Schuster O. Supramolecular detection of solvent vapours with calixarenes: mass-sensitive sensors, molecular mechanics and BET studies. Mikrochim. Acta. 1995;119:55–62.10.1007/BF01244854
  • Ebato H, Gentry CA, Herron JN, Muller W, Okahata Y, Ringsdort H, Suci PA. Investigation of specific binding of antifluorescyl antibody and fab to fluorescein lipids in Langmuir–Blodgett deposited films using quartz crystal microbalance methodology. Anal. Chem. 1994;66:1683–1689.10.1021/ac00082a014
  • Yang HC, Dermody DL, Xu C, Ricco AJ, Crooks RM. Molecular interactions between organized, surface-confined monolayers and vapor-phase probe molecules. 8. Reactions between acid-terminated self-assembled monolayers and vapor phase bases. Langmuir. 1996;12:726–735.10.1021/la9505226
  • Zhou R, Hierlemann A, Schierbaum KD, Geckeler KE, Gopel W. Detection of organic solvents with reliable chemical sensors based on cellulose derivatives. Sens. Actuators B. 1995;24:443–447.10.1016/0925-4005(95)85099-6
  • Yokoyama K, Ikebukuro K, Tamiya E, Karube I, Ichiki N, Arikawa Y. Highly sensitive quartz crystal immunosensors for multisample detection of herbicides. Anal. Chim. Acta. 1995;304:139–145.10.1016/0003-2670(94)00579-B
  • Nicolinia C, Adami M, Dubrovskya T, Erokhinb V, Faccia P, Paschkevitsch P, Sartore M. High-sensitivity biosensor based on LB technology and on nanogravimetry. Sens. Actuators B. 1995;24:121–128.10.1016/0925-4005(95)85026-0
  • Sauerbrey G. Verwendung von Schwingquarzen zur Wägung dünner. Schichten und Microwägung [The use of quartz oscillators for weighing thin layers and for microweighing]. Z. Phys. 1959;155:206–222.10.1007/BF01337937
  • Komolov A, Schaumburg K, Møller PJ, Monakhov V. Characterization of conducting molecular films on Silicon: AFM, AES, XPS and surface photovoltage. Appl. Surf. Sci. 1999;142:591–597.10.1016/S0169-4332(98)00924-6
  • Ayad MM, Salahuddin NA, Abou-Seif AK, Al-Ghayesh MO. pH sensor based on polyaniline and aniline-anthranilic acid copolymer films using quartz crystal microbalance and electronic absorption spectroscopy. Polym. Adv. Technol. 2008;19:1142–1148.10.1002/pat.v19:8
  • Ayad MM, Salahuddin NA, Alghaysh MO, Issa RM. Phosphoric acid and pH sensors based on polyaniline films. Curr. Appl. Phys. 2010;10:235–240.10.1016/j.cap.2009.05.030
  • Ayad MM, El-Hefnawey G, Torad NL. Chlorinated hydrocarbon vapors sensor using polyaniline coated quartz crystal microbalance sensor. Sens. Actuators B. 2008;134:887–894.10.1016/j.snb.2008.06.058
  • Ayad MM, Torad NL. Quartz crystal microbalance sensor for detection of aliphatic amines vapours. Sens. Actuators B. 2010;147:481–487.10.1016/j.snb.2010.03.064
  • Ayad MM, Torad NL. Alcohol vapours sensor based on thin polyaniline salt film and quartz crystal microbalance. Talanta. 2009;78:1280–1285.10.1016/j.talanta.2009.01.053
  • Mucha M, Wańkowicz K, Balcerzak J. Analysis of water adsorption on chitosan and its blends with hydroxypropylcellulose. e-Polymers. 2007;7:181–190.
  • Wang B, Zhang J, Cheng G, Dong S. Amperometric enzyme electrode for the determination of hydrogen peroxide based on sol–gel/hydrogel composite film. Anal. Chim. Acta. 2000;407:111–118.10.1016/S0003-2670(99)00778-3
  • Nasution TI, Nainggolan I, Hutagalung SD, Ahmad KR, Ahmad ZA. The sensing mechanism and detection of low concentration acetone using chitosan-based sensors. Sens. Actuators B. 2013;177:522–528.10.1016/j.snb.2012.11.063
  • Cuonga ND, Hoa TT, Khieu DQ, Lamd TD, Hoa ND, Hieu NV. Synthesis, characterization, and comparative gas-sensing properties of Fe2O3 prepared from Fe3O4 and Fe3O4-chitosan. J. Alloys Comp. 2012;523:120–126.10.1016/j.jallcom.2012.01.117
  • Kaushik A, Solanki PR, Ansari AA, Sumanaa G, Ahmad S, Malhotra BD. Iron oxide-chitosan nanobiocomposite for urea sensor. Sens. Actuators B. 2009;138:572–580.10.1016/j.snb.2009.02.005
  • Bouvree A. Conductive Polymer nano-bioComposites (CPC): chitosan-carbon nanoparticle a good candidate to design polar vapour sensors. Sens. Actuators B. 2009;138:138–147.10.1016/j.snb.2009.02.022
  • Dykstra P, Hao J, Koev ST, Payne GF, Yu L, Ghodssi R. An optical MEMS sensor utilizing a chitosan film for catechol detection. Sens. Actuators B. 2009;138:64–70.10.1016/j.snb.2009.01.065
  • Dubas ST, Iamsamai C, Potiyaraj P. Optical alcohol sensor based on dye–chitosan polyelectrolyte multilayers. Sens. Actuators B. 2006;113:370–375.10.1016/j.snb.2005.03.032
  • Wen G, Zhang Y, Shuan S, Dong C, Choi MMF. Application of a biosensor for monitoring of ethanol. Biosens. Bioelectron. 2007;23:121–129.10.1016/j.bios.2007.03.024
  • Page EH, Cook CK, Hater MA, Mueller CA, Grote AA, Mortimer VD. Visual and ocular changes associated with exposure to two tertiary amines. Occup. Environ. Med. 2003;60:69–75.10.1136/oem.60.1.69
  • Greim H, Bury D, Klimisch H-J, Oeben-Negele M, Ziegler-Skylakakis K. Toxicity of aliphatic amines: structure-activity relationship. Chemosphere. 1998;36:271–295.10.1016/S0045-6535(97)00365-2
  • Jeremy LC. Investigation of film forming properties of β-chitosan from jumbo squid pens (Dosidicus gigas) and improvement of water solubility of β-chitosan. Corvallis, OR: Oregon State University; 2012.
  • Mirmohseni A, Oladegaragoze A. Construction of a sensor for determination of ammonia and aliphatic amines using polyvinylpyrrolidone coated quartz crystal microbalance. Sens. Actuators B. 2003;89:164–172.10.1016/S0925-4005(02)00459-8
  • Li G, Zheng J, Ma X, Sun Y, Fu J, Wu G. Development of QCM trimethylamine sensor based on water soluble polyaniline. Sensors. 2007;7:2378–2388.10.3390/s7102378
  • Ting Z, Zhong C, Yun-Lin D, Ting-Ting C, Jing-Lin H, Lei-Tao X, Shu L. Sensing mechanism and application for recognition of ethanol by calixarene supramolecules based on hydrogen bonds interaction. Chem. J. Chinese U. 2013;34:1339–1346.
  • Cagri A, Ustunol Z, Ryser ET. Antimicrobial edible films and coatings: a review. J. Food Prot. 2004;67:833–848.
  • Chagger HK, Nadaji FE, Sykes ML, Thomas KM. Kinetics of adsorption and diffusional characteristics of carbon molecular sieves. Carbon. 1995;33:1405–1411.10.1016/0008-6223(95)00087-T
  • Mirmohseni A, Oladegaragoze A. Determination of chlorinated aliphatic hydrocarbons in air using a polymer coated quartz crystal microbalance sensor. Sens. Actuators B. 2004;102:261–270.10.1016/j.snb.2004.04.027

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