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研究生: 鍾孟樺
Chung, Meng-Hua
論文名稱: 分子拓印導電高分子電極之開發及其應用於生醫電子式感測器
Molecularly Imprinted Conducting Polymer Electrodes and Their Applications in Electrical Biomedical Sensors
指導教授: 洪健中
Hong, Chien-Chong
口試委員: 李國賓
林志中
學位類別: 碩士
Master
系所名稱: 工學院 - 動力機械工程學系
Department of Power Mechanical Engineering
論文出版年: 2011
畢業學年度: 99
語文別: 中文
論文頁數: 115
中文關鍵詞: 分子拓印高分子分子拓印導電高分子麻醉藥異丙酚生醫感測器
外文關鍵詞: Molecular Imprinted polymer, conducting polymer, Propofol sensor, biosensor
相關次數: 點閱:3下載:0
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    著作發表與專利申請中

    [1] L Mcgaughran, LJ Voss, R Oliver, M Petcu, P Schaare, JPM Barnard, JW Sleigh., Rapid Measurement Of Blood Propofol Levels: A Proof Of Concept Study, Journal Of Clinical Monitoring And Computing, 20, 109–115, 2006.
    [2] S. A. Piletsky, S. Alcock And A. P. F. Turner, Molecular Imprinting: At The Edge Of The Third Millennium., Trends In Biotechnology, 19, 9-12 ,2001
    [3]A. J. Cunningham, Introduction To Bioanalytical Sensors. 1st Ed., New York, John Wiley And Sons, 1998.
    [4]G. Vlatakis, L. I. Andersson, R. Muller And K. Mosbach, Drug Assay Using Antibody Mimics Made By Molecular Imprinting., Nature, 361, 645–647, 1993.
    [5] L. I. Andersson, R. Muller, G. Vlatakis, And K. Mosbach. ,Mimics Of The Binding Sites Of Opioid Receptors Obtained By Molecular Imprinting Of Enkephalin And Morphine., National Acad Sciences, 92, 4788–4792, 1995
    [6] L. D. Mello And L. T. Kubota, Review Of The Use Of Biosensors As Analytical Tools In The Food And Drink Industries, Food Chemistry, 77, 237–256, 2002
    [7] X. Fan, I. M. White, S. I. Shopova, H Zhu, J. D. Suter, Sensitive Optical Biosensors For Unlabeled Targets: A Review, Analytica Chimica Acta, 620, 8–26, 2008
    [8] M. Yao And J. C. Wolfe., A Laser-Induced fluorescence Biosensor By Using Ellipsoidal Reflector., Optics And Laser Technology, 39, 1040–1045, 2007
    [9] Y. S. Li, W. P. Liu, X. F. Gao, D. D. Chen And W. G. Li., Immobilized Enzymatic fluorescence Capillary Biosensor For Determination Of Sulfated Bile Acid In Urine., Biosensors And Bioelectronics, 24, 538–544, 2008
    [10] B. J. Jeon, M. H. Kim And J. C. Pyun, Application Of A Functionalized Parylene film As A Linker Layer Of SPR Biosensor., Sensors And Actuators B 2010
    [11] W. C. Law, P. M., K. T.Yong, I. Roy, A. Baev, S. Patskovsky, A. V. Kabashin, H. P. Ho And P. N. Prasad, Wide Dynamic Range Phase-Sensitive Surface Plasmon Resonance Biosensor Based On Measuring The Modulation Harmonics., Biosensors And Bioelectronics, 23, 627–632, 2007
    [12] D.R. Albano And F. Sevilla III, Piezoelectric Quartz Crystal Sensor For Surfactant Based On Molecularly Imprinted Polypyrrole., Sensors And Actuators B, 121, 129–134 , 2007
    [13] S. E. Diltemiz, D. Hur, A. Ersoz, A. Denizli And R. Say, Designing Of MIP Based QCM Sensor Having Thymine Recognition Sites Based On Biomimicking DNA Approach., Biosensors And Bioelectronics, 25, 599–603, 2009
    [14] Leland C. Clark, Jr., And Champ Lyons, Electrode Systems For Continuous Monitoring In Cardiovascular Surgery.,Annals New York Academy Of Sciences, 102, 29-45, 1962
    [15] A. A. Karyakin, E. E. Karyakina And L. Gorton, A High-Sensitive Glucose Amperometric Biosensor Based On Prussian Blue Modified Electrodes., Analytica Letters, 27, 2861–2869, 1994
    [16] F. Ricci, A. Amine, G. Palleschi And D. Moscone, Prussian Blue Based Screen Printed Biosensors With Improved Characteristics Of Long-Term Lifetime And Ph Stability. Biosensors And Bioelectronics, 18, 165–174, 2003
    [17] J. C. Vidal, J. Espuelas, G. R. Esperanza And J. R. Castillo, Amperometric Cholesterol Biosensors Based On The Elctropolymerization Of Pyrrole And The Electrocatalytic Effect Of Prussian-Blue Layers Helped With Self-Assembled Monolayers., Biosensors And Bioelectronics, 64, 655–664, 2004
    [18] A. A. Karyakin, E. E. Karyakina And Lo Gorton, Prussian-Blue Based Amperometric Biosensors In Flow-Injection Analysis., Talanta, 43, 1597–1606, 1996
    [19] Y. Wang, J. Zhu, R. Zhu, Z. Zhu, Z. Lai And Z. Chen, Chitosan Prussian Blue-Based Biosensors. Science And Technology, 14, 831–836, 2003
    [20] Q. Chi, S. Dong, Amperometric Biosensors Based On The Immobilization Of Oxidases In A Prussian Blue Film By Electrochemical Codeposition. Analytica Chimica Acta, 310, 429–436, 1995
    [21] Y. Liu, L. Nie, W. Tao, S. Yao, Amperometric Study Of Au-Colloid Function On Xanthine Biosensor Based On Xanthine Oxidase Immobilized In Polypyrrole Layer., Electroanalysis, 16, 1271–1278, 2005
    [22] D. D. Macdonald, Reflections On The History Of Electrochemical Impedance Spectroscopy., Electrochimica Acta, 51, 1376–1388, 2006
    [23] S. A. Piletsky, S. Subrahmanyam And A. P. F. Turner, Application Of Molecularly Imprinted Polymers In Sensors For The Environment And Biotechnology., Sensor Review, 21, 292-296, 2001.
    [24] Gyorgy Inzelt, Conducting Polymers : A New Era in Electrochemistry, 2008 Springer-Verlag Berlin Heidelberg
    [25] L. Pauling and D. Campbell, The manufacture of antibodies in vitro, Journal of Experimental Medicine, 76, 211-200, 1942.
    [26] G. Wulff and A. Sarhan, The use of polymers with enzyme-analogous structures for the resolution of racemates, Angewandte Chemie, 11, 341-344, 1972.
    [27]L. Andersson, G. Sellergren and K. Mosbach, “Imprinting of amino acid derivatives in macroporous polymers”, Tetrahedron Letter, 25, 5211-5214, 1984.
    [28]S. A. Piletsky, S. Subrahmanyam And A. P. F. Turner, Application Of Molecularly Imprinted Polymers In Sensors For The Environment And Biotechnology., Sensor Review, 21, 292-296, 2001.
    [29] J. M. Lin, T. Nakagama, K. Uchiyama And T. Hobo, Capillary Electrochromatographic Separation Of Amino Acid Enantiomers Using On-Column Prepared Molecularly Imprinted Polymer., Journal Of Pharmaceutical And Biomedical Analysis, 15, 1351–1358, 1997
    [30] M. J. O'Donnell, W. D. Bennett, S. Wu. The Synthesis Of A D-Amino Acid Ester In An Organic Media With Α- Chymtrypsin Modified By A Bio-Imprinting Procedure., Biotechnology Letters, 12, 161–166 , 1990
    [31] M. Morita, O. Niwa And T. Horiuchi, Interdigitated Array Microelectrodes As Electrochemical Sensors., Electrochimica Acta, 42, 3177–3183 , 1997
    [32]M.T. Muldoon And L.H. Stanker, Molecularly Imprinted Solid Phase Extraction Of Atrazine From Beef Liver Extracts., Analytical Chemistry, 69, 803–808, 1997
    [33] T. A. Sergeyeva, S. A. Piletsky, A. A. Brovko, E. A. Slinchenko, L. M. Sergeeva And A. V. El'skaya, Selective Recognition Of Atrazine By Molecularly Imprinted Polymer Membranes. Development Of Conductometric Sensor For Herbicides Detection., Analytica Chimica Acta, 392, 105–111, 1999
    [34] A. Zander, P. Findlay, T. Renner And B. Sellergren, Analysis Of Nicotine And Its Oxidation Products In Nicotine Chewing Gum By A Molecularly Imprinted Solid Phase Extraction., Analytical Chemistry, 70, 3304–3314 , 1998
    [35] M. Maeda And R.A. Bartsch, Molecular And Ionic Recognition With Imprinted Polymers: A Brief Overview., ACS Symposium Series, 703, 1–8, 1998
    [36] L. I. Andersson, Molecular Imprinting: Developments And Applications In The Analytical Chemistry Field., Journal Of Chromatography B, 745, 3–13, 2000
    [37] S. Hjerten, J. L. Liao, K. Nakazato, Y. Wang, G. Zamaratskaia And H. X. Zhang, Gel Mimicking Antibodies In Their Selective Recognition Of Proteins., Chromatographia, 44, 227–234, 1996
    [38] 李世惠、董瑞安,分子拓印高分子感測器的製作與應用,科儀新知,第27卷,第6期,12-21頁,2006。
    [39]C.L. Choong, W. I. Milne, Dynamic modulation of detection window in conducting polymer based biosensors, Biosensors and Bioelectronics, 25, 2384-2388, 2010
    [40] A. Pietrzyk, S. Suriyanarayanan, W. Kutner, Molecularly imprinted poly[bis(2,2′-bithienyl)methane] film with built-in molecular recognition sites for a piezoelectric microgravimetry chemosensor for selective determination of dopamine, Bioelectrochemistry, 80, 62-72, 2010
    [41] G. B. Lee, K. C. Ho, W. M. Yeh, C. H. Weng, A microfluidic system utilizing molecularly imprinted polymer films for amperometric detection of morphine, Sensors and Actuators B-Chemical, 121, 576-582, 2007
    [42] C. L. Choong, W. I. Milne, Dynamic modulation of detection window in conducting polymer based biosensors, Biosensors & Bioelectronics, 25, 2384-2388, 2010
    [43] B. Deore, Z. Chen, T. Nagaoka, Potential-Induced Enantioselective Uptake of Amino Acid into Molecularly Imprinted Overoxidized Polypyrrole, Anal. Chem., 72, 3989-3994, 2000
    [44] H.J. Liang , T.R. Ling , J. F. Rick, T.C. Chou, Molecularly imprinted electrochemical sensor able to enantroselectivly recognize d and l-tyrosine, Analytica Chimica Acta, 542, 83–89, 2005
    [45] E. Pardieu, H. Cheap, Molecularly imprinted conducting polymer based electrochemical sensor for detection of atrazine, Analytica Chimica Acta, 649, 236-245, 2009
    [46] M. Petcu, J. Cooney, C. Cook, D. Lauren, P. Schaare and P. Holland, Molecular imprinting of a small substituted phenol of biological importance, Analytica Chimica Acta, 435, 49–55, 2001.
    [47]H. C. Huang, S. Y. Huang, C. I. Lin and Y. D. Lee, ”A multi-array sensor via the integration of acrylic molecularly imprinted photoresists and ultramicroelectrodes on a glass chip, Analytica Chimica Acta, 582, 137–146, 2007.
    [48] C. C. Hong, P. H. Chang, C. C. Lin, C. L. Hong, A disposable microfluidic biochip with on-chip molecularly imprinted biosensors for optical detection of anesthetic propofol, Biosensors & Bioelectronics, 25, 2058-2064, 2010
    [49] L. Ozcan, M. Sahin, Y. Sahin, Electrochemical preparation of a molecularly imprinted polypyrrole-modified pencil graphite electrode for determination of ascorbic acid, Sensors, 8, 5792-5805, 2008
    [50] L. Ozcan, Y. Sahin, Determination of paracetamol based on electropolymerized-molecularly imprinted polypyrrole modified pencil graphite electrode, Sensors and Actuators B-Chemical, 127, 362-369, 2007
    [51] Z. Wang, J. Kang, X. Liu And Y. Ma, Capacitive Detection Of Theophylline Based On Electropolymerized Molecularly Imprinted Polymer., International Journal Of Polymer Analysis And Characterization, 12, 131–142, 2007
    [52] Y. Diab, P. Venet, H. Gualous, G. Rojat, Self-Discharge Characterization and Modeling of Electrochemical Capacitor Used for Power Electronics Applications, IEEE Transactions on Power Electronics, 24, 510-517, 2009
    [53] B.W. Ricketts, C.T.That, Self-discharge of carbon-based supercapacitors with organic electrolytes, Journal of Power Sources, 89, 64-69, 2000
    [54] B. E. Conway, W. G. Pell, and T.-C. Liu, Diagnostic analyses for mechanisms of self-discharge of electrochemical capacitors and batteries, , Journal of Power Sources, 65, 53–59, 1997.
    [55] A. Ramanaviciene, A. Ramanavicius, Molecularly Imprinted Polypyrrole-Based Synthetic Receptor For Direct Detection Of Bovine Leukemia Virus Glycoproteins., Biosensors And Bioelectronics, 20, 1076–1082, 2004
    [56] H. Schwilden, H. Stoeckel And J. Schuttler, Closed-Loop Feedback Control Of Propofol Anesthesia By Quantitative EEG Analysis In Human., British Journal Of Anaesthesia, 62, 290-296, 1989
    [57] H. S. Traast And C. J. Kalkman, Electroencephalographic Characteristics Of Emergence From Propofol/Sufentanil Total Intravenous Anesthesia, Anesthesia And Analgesia, 81, 366-371, 1995.
    [58] K. Leslie, D. I. Sessler, M. Schroeder And K. Walter, Propofol Blood Concentration And The Bispectral Index Predict Suppression Of Learning During Propofol/Epidural Anesthesia In Volunteers, Anesthesia And Analgesia, 81, 1269-1274, 1995.
    [59] M. H. Sims And R. E. Moore, Auditory Evoked Response In The Clinically Normal Dog: Middle Latency Components., American Journal Of Veterinary Research, 45, 2028-2033, 1984.
    [60] T. Laurila, T. Sorvajarvi, J. Saarela, Optical Detection of the Anesthetic Agent Propofol in the Gas Phase, Analytical Chemistry, 83, 3963-3967, 2011
    [61] S. P. Ozkorucuklu , Y. Şahin , And G. Alsancak, Voltammetric Behaviour Of Sulfamethoxazole On Electropolymerized-Molecularly Imprinted Overoxidized Polypyrrole., Sensors, 8, 8463-8478,2008
    [62] Z. Wang, J. Kang, X. Liu And Y. Ma, Capacitive Detection Of Theophylline Based On Electropolymerized Molecularly Imprinted Polymer., International Journal Of Polymer Analysis And Characterization, 12, 131–142, 2007
    [63] C. H. Ahn, A new dynamic electrochemical transduction mechanism for interdigitated array microelectrodes, Lab on a Chip, 4, 581-587, 2004

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