LIST OF REFERENCES 1. J. W. Gardner and P. N. Bartlett, “A brief history of electronic noses,” Sensors and Actuators B: Chemical, vol. 18, no. 1-3, pp. 210-211, Mar. 1994. 2. A. P. D. Barnett and A. P. G. Bell, “Feasibility Study of an Electronic Nose Device for Meat Processing Odour Monitoring,” Analysis, no. March, pp. 138, 2001. 3. F. Che Harun, J.A. Covington, J.W. Gardner, “Portable e-Mucosa System: Mimicking the biological olfactory”, Science Direct, 2009, pp. 991-994. 4. Brian Matthews, Jing Li, Stephen Sunshine, Lee Lerner, and Jack W. Judy, “Effects of Electrode Configuration on Polymer Carbon-Black Composite Chemical Vapor Sensor Performance”, IEEE Sensors Journal, VOL. 2, NO. 3, June 2002. 5. Goki Eda and Manish Chhowalla, “Graphene –based Composite Thin Films for Electronics”, Nano Letters, 2009, Vol. 9 No. 2, pp. 814-818. 6. P. Zhao, M. Choudhury, K. Mohanram, and J. Guo, “Analytical Theory of Graphene Nanoribbon Transistors,” 2008 IEEE International Workshop on Design and Test of Nano Devices, Circuits and Systems, no. 2, pp. 3-6, Sep. 2008. 7. Arezoo Emadi, Cyrus Shafai, Michael S. Freund, Douglas J. Thomson, “Development of a Polymer- based Gas Sensor – Humidity and CO2 Sensitivity”, IEEE, 2009, pp. 112-115. 8. H. Lei, W. G. Pitt, L. K. McGrath, and C. K. Ho, “Modeling carbon black/polymer composite sensors,” Sensors and Actuators B: Chemical, vol. 125, no. 2, pp. 396-407, Aug. 2007. 42 9. J. C. Grunlan, a. R. Mehrabi, M. V. Bannon, and J. L. Bahr, “Water-Based Single-Walled-Nanotube-Filled Polymer Composite with an Exceptionally Low Percolation Threshold,” Advanced Materials, vol. 16, no. 2, pp. 150153, Jan. 2004. 10. a. V. Shevade, M. a. Ryan, M. L. Homer, a. M. Manfreda, H. Zhou, and K. S. Manatt, “Molecular modeling of polymer composite–analyte interactions in electronic nose sensors,” Sensors and Actuators B: Chemical, vol. 93, no. 1-3, pp. 84-91, Aug. 2003. 11. K. Arshak, C. Cunniffe, E. Moore, L. Cavanagh, and J. Harris, “A novel approach to electronic nose-head design, using a copper thin film electrode patterning technique,” 28th International Spring Seminar on Electronics Technology: Meeting the Challenges of Electronics Technology Progress, 2005., pp. 185-190, 2005. 12. F. K. Che Harun, J. E. Taylor, J. a. Covington, and J. W. Gardner, “An electronic nose employing dual-channel odour separation columns with large chemosensor arrays for advanced odour discrimination,” Sensors and Actuators B: Chemical, vol. 141, no. 1, pp. 134-140, Aug. 2009. 13. S. A. Hooker and D. Ph, “Nanotechnology Advantages Applied to Gas Sensor Development,” Business, pp. 1-7, 2002. 14. F. Khairi and C. Harun, “Mimicking the Human Olfactory System : A Portable e ‐ Mucosa by,” no. September, 2009. 15. N. S. Lewis, “Comparisons between mammalian and artificial olfaction based on arrays of carbon black-polymer composite vapor detectors.,” Accounts of chemical research, vol. 37, no. 9, pp. 663-72, Sep. 2004. 16. M. C. Lonergan, E. J. Severin, B. J. Doleman, S. a. Beaber, R. H. Grubbs, and N. S. Lewis, “Array-Based Vapor Sensing Using Chemically Sensitive, Carbon Black−Polymer Resistors,” Chemistry of Materials, vol. 8, no. 9, pp. 2298-2312, Jan. 1996. 17. S. Macnaughton and S. Sonkusale, “Carbon Nanotube and Graphene Based Gas Micro- Sensors Fabricated by Dielectrophoresis on Silicon,” Changes, pp. 894-897, 2010. 18. A. J. Matzger, “Vapor sensing with arrays of carbon black-polymer composites,” Proceedings of SPIE, vol. 3710, no. April, pp. 315-320, 1999. 43 19. L. I. Smith, “A tutorial on Principal Components Analysis Introduction,” Statistics, 2002. 20. S. Stankovich et al., “Graphene-based composite materials.,” Nature, vol. 442, no. 7100, pp. 282-6, Jul. 2006. 21. F. Tian, S. X. Yang, and K. Dong, “Circuit and Noise Analysis of Odorant Gas Sensors in an E-Nose,” Sensors, vol. 5, no. 1, pp. 85-96, Feb. 2005. 22. X.-J. Huang and Y.-K. Choi, “Chemical sensors based on nanostructured materials,” Sensors and Actuators B: Chemical, vol. 122, no. 2, pp. 659671, Mar. 2007. 23. H. Search, C. Journals, A. Contact, and M. Iopscience, “The Research on Artificial Olfaction System-Electronic Nose,” Journal of Imaging Technology, vol. 667, pp. 7-11, 2006. 24. T. Mohiuddin, A. Zhukov, D. Elias, K. Novoselov, E. W. Hill, and A. K. Geim, “Nanofabrication with Graphene Nanotechnology at Manchester,” Science. 25. D. Wobschall, “A Multi-Element Engineering, no. June, pp. 1-48, 2004. Smart Gas Sensor,” Electrical 26. B. Cedex, “Dielectric and Structural Properties of Polymer Carbon Black Composites”, October, pp. 0-3, 1996. 27. D. M. Wilson and S. D. Garrod, “Optimization of Gas-Sensitive Polymer Arrays Using Combinations of Heterogeneous and Homogeneous,” Sensors (Peterborough, NH), vol. 2, no. 3, pp. 169-178, 2002. 28. P. E. Keller, L. J. Kangas, L. H. Liden, S. Hashem, R. T. Kouzes, and P. O. Box, “Electronic noses and their applications,” SubStance, vol. 4, no. 1, pp. 116-119, 1830. 29. F. Khairi C. Harun (2009) “Mimicking the Human Olfactory System : A Portable e ‐ Mucosa,”Doctor Philosophy, University of Warwick. 30. Cosmin Burian (2010), “Improvement of MS-based e-nose performances by incorporation of chromatographic retention time as a new data dimension”, Doctoral Thesis, University of Rovira, Virgili.
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