KAJIAN BIOPENGESAN POLIANILINA BESERTAPENCIRIANNYA
Keywords:
polimer konduksi, fabrikasi biopengesan, aktiviti biomolekulSynopsis
Beberapa kajian melaporkan keburukan pengesan (kimia dan elektrokimia) berasaskan polimer konduksi menggunakan kaedah swa-atur monolapisan dan pengenapan filem LB dalam proses pembuatannya. Contohnya, kaedah penjerapan fizikal adalah cenderung untuk bergumpal dan mempamerkan ketidakstabilan di mana ikatan kovalen menyebabkan pengurangan dalam aktiviti biomolekul. Selain itu, kaedah ini tidak menyediakan kawalan terhadap bilangan enzim yang dipegunkan. Oleh itu, persepsi terhadap kaedah pembuatan biopengesan menggunakan kaedah ini perlu dijelaskan supaya tidak wujud keterhadan dalam proses fabrikasi biopengesan. Buku ini memberikan panduan serta perkongsian mengenai biopengesan dan perkara yang berkaitan dengannya.
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References
Agari, Y. & Uno, T. (1985). Thermal conductivity of polymer filled with carbon materials: effect of conductive particles chains on thermal conductivity. Journal of Applied Polymer Science. 30: 2225- 2235.
Agbor, N.E., Cresswell, J.P., Petty, M.C. & Monkman, A.P. (1997). An optical gas sensor based on polyaniline Langmuir Blodgett films. Journal of Sensors and Actuators B: Chemical. 4: 137–141.
Ai, W. S., Feng, L. Q., Ming, H. Y., Guo, L. S. & Ru, Q. Y. (2008). Amperometric H2O2 biosensor based on poly- thionine nanowire/ HRP/ nano-Au-modified glassy carbon electrode. Journal of Sensors and Actuators B 129: 779- 783.
Alexander L Kanibolotsky, Neil J Findlay & Peter J Skabara. (2015). Polythiophene and oligothiophene systems modified by TTF electroactive units for organic electronics. Beilstein Journal of Organic Chemistry 11: 1749- 1766.
Ali Reza Harifi-Mood & Hasan Khorshahi. (2018). Binary mixtures of dimethyl sulfoxide with methanol, ethylene glycol and glycerol as solvent: Solvatochromism and chemical kinetics study. Journal of Molecular Liquids 259: 361-368.
Al- Ghamdi, A. & Al- Saigh, Z.Y. (2002). Surface and thermodynamic caharacterization of conducting polymers by inverse gas chromatography 1 Polyaniline. Journal of Chromatography A 969: 229- 243.
Alumaa, A., Hallik, A., Mäeorg, U., Sammelselg, V. & Tamm, J. (2004). Potentiometric properties of polypyrrole bilayers. Journal of Electrochimica Acta 49: 1767- 1774.
Anderson, J.H. & Parks, G.A. (1968). The electrical conductivity of silica gel in the presence of adsorbed water. Journal of Physical Chemistry 72: 3662- 3668.
Arnav Paul & Renjith Thomas. (2022). Evidences for sulfur centered hydrogen bond with sulfur atoms as a donor in aromatic thiols and aliphatic thiols in aqueous solution. Journal of Molecular Liquids 348: 118078.
Athawale, A.A., Kulkarni, M.V. & Chabukswar, V.V. (2002). Studies on chemically synthesized soluble acrylic acid- doped polyaniline. Journal of Material Chemistry 73: 106- 110.
AZoNano. (2003). Gold nanoparticles to detect prostate and breast cancer. http://www.azonano.com/details.asp?ArticleID=180 [22 Disember 2010].
Bansi, D. Malhotra, Asha Chaubey & Singh, S.P. (2006). Prospects of conducting polymers in biosensors. Journal of Analytica Chimica Acta 578: 59-74.
Barbara Palys, Monika Marzec & Jerzy Rogalski. (2010). Poly-o- aminophenol as a laccase mediator and influence of the enzyme on the polymer electrodeposition. Journal of Bioelectrochemistry 80: 43- 48.
Baughman, R.H., Shacklette, L.W., Elsenbaumer, R.L., Plichta, E.J. & Bccht, C. (1991). Microelectromechanical Actuators Based on Conducting Polymers. Dordrecht: Kluwer Academic Publishers.
Berglund, R.N., Agarwald, J.K., Othmor, P. & Liu, B.Y.H. (1974). Experimental studies of optical particle counters: Author’s reply. Atmospheric environments 8: 1343-1344.
Bhadra, S., Chattopadhyay, S., Singha, N.K. & Khastgir, D. (2008). Improvements of conductivity of electrochemically synthesized polyaniline. Journal of Applied Polymer Science 108: 57-64.
Bhattacharyya A.S. (2024). Conducting polymers in biosensing: A review. Chemical Physics Impact 8: 100642
Bordosova, M., Stiller, B., Tredgold, R.H., Woolley, M., Hodge, P. & Brehmer, L. (1996). Polythiophene Langmuir- Blodgett films: how do they order. Journal of Thin Solid Films 284- 285: 450- 452.
Boris, B. Damaskin, Oleg A. Petri & Valerii V. Batrakov. (1971). Adsorption of Organic Compounds on Electrodes. New York: Plenum Press.
Bosshard, H.R., Anni, H. & Yonetani, T. (1991). Peroxidases in Chemistry and Biology. Boca Roton: CRC publisher.
Bridge Technology. (2009). Four point probes. http://www.fourpointprobes.com/universal_instructions.pdf [6 Mei 2011].
Brie, M., Turcu, R., Neamtu, C. & Pruneanu, S. (1996). The effect of initial conductivity and doping anions on gas sensitivity of conducting polypyrrole films to NH3. Journal of Sensors and Actuators B: Chemical 37: 119–122.
Caseli, L., Dos Santos, D.S., Foschini, M., Goncalves, D. & Oliveira Jr., O.N. (2006). The effect of the layer structure on the activity of immobilized enzymes in ultrathin films. Journal of Colloid and Interface Science 303: 326-331.
Cao, Y., Smith, P. & Heeger, A.J. (1993). Counter-ion induced processibility of conducting polyaniline. Journal of Synthetic Metal 57: 3514- 3519.
Cesar, F.S., Calum, J. M. & Keith R. (2005). Electrochemical impedance spectroscopy studies of polymer degradation: application to biosensor development. Trends in Analytical Chemistry 24:1.
Challa S.S.R.Kumar. (2006). Nanosystem Characterisation Tools in the Life Sciences. Wienheim: WILEY-VCH Verlag Gmbh & Co. KgaA.
Chechik, V., Crooks, R.M. & Stirling, C.J.M. (2000). Reactions and reactivity in self- assembled monolayers. Journal of Advanced Materials 12: 1161–1171.
Chen, C.W., Hua, J. & Liu, T.J. (2007). Stable Langmuir-Blodgett film deposition of polyaniline and arachidic acid. Journal of Thin Solid Films 515: 7299–7306.
Chen Jianrong, Miao Yuqing, He Nongyue, Wu Xiaohua & Li Sijiao. (2004). Nanotechnology and biosensors. Journal of Biotechnology Advances 22: 505- 518.
Cho, J.H., Lee, S.H., Kang, H., Char, K., Koo, J., Seung & B.H. (2003). Quantitative analysis on the adsorbed amount and structural characteristics of spin self- assembled multilayer films. Journal of Polymer 44:5455–5459.
Chun- Wei Chen, Ju- Hua Yeh & Ta- Jo Liu. (2007). Stable Langmuir- Blodgett film deposition of polyaniline and arachidic acid. Journal of Thin Solid films 515: 7299- 7306.
Cosnier S. & Gondran C. (1999). Fabrication of biosensors by attachment of biological macromolecules to electropolymerized conducting films. Journal of Analusis 27: 558- 564.
Dai, J.H. & Bruening, M.L. (2002). Catalytic nanoparticles formed by reduction of metal ions in multilayered polyelectrolyte films. Journal of Nano Letters 2:497–501.
Danyal Sabzi, Danny Hsu Ko, Ashton Partridge & Ali Hosseini. (2023). Impact of self-assembled monolayer templates on electrodeposition of Pt particles. Journal of Electroanalytical Chemistry 931: 117194.
David, C. D. (2009). Enzyme: MedlinePlus medical encyclopedia. http://www.nlm.nih.gov/medlineplus/ency/article/002353 [5 Mei 2011].
Debarnot, D.N. & Epaillard, F.P. (2003). Polyaniline as a newsensitive layer for gas sensors. Journal of Analytica. Chimica Acta 475: 1–15.
De Chanterac, H., Roduit, P., Belhadj- Tahar, N., Fourrier- Lamer, A., Djigo, Y., Aeiyach & S., Lacaze, P.C. (1992). Electromagnetic absorption of polyanilines at microwave frequencies. Journal of Synthetic Metal 52: 183.
Decher, G., Hong, J.D. & Schmitt, J. (1992). Build up of ultrathin multilayer films by a self-assembly process: III. Consecutively alternating adsorption of anionic and cationic polyelectrolytes on charged surfaces. Journal of Thin solid Films 210- 211: 831- 835.
Decher. G. (1997). Fuzzy Nanoassemblies - Toward Layered Polymeric Multicomposites. Journal of Science 277: 1232- 1237.
De Oliveira, H.P., Andrade, C.A.S & De Melo, C.P. (2005). Optical and dielectric properties of polypyrrole nanoparticles in a polyvinylalcohol matrix. Journal of Synthetic Metals 155: 631- 634.
DePaoli, M.A., Panero, S., Prosperi, P. & Scrosati, B. (1990). Study of the electrochromism of polypyrrole/dodecylsulfate in aqueous solutions. Journal of Electrochimica Acta 35: 1145- 1148.
Dhanabalan, A., Riul Jr., A. & Oliveira Jr., O. N. (1998). Composite Langmuir- Blodgett (LB) films of polyaniline and cadmium stearate. Journal of Supramolecular Science 5: 75-81.
Dhawan, S.K. & Trivedi, D.C. (1991). EMI shielding with organic conductive polymers. Journal of Electromagnetic Compatability 4: I-4.
Dhawan, S.K., Kumar, D., Ram, M.K., Chandra, S. & Trivedi, D.C. (1997). Application of conducting polyaniline as sensor material for ammonia. Journal of Sensors and Actuators B 40: 99-103.
Diaz, A.F., Kanazawa, K.K. & Gardini, G.P. (1979). Electrochemical polymerization of pyrrole. Journal of Chemical Society, Chemical Communication 14: 635- 636.
Dipak Dutta, Tridib Kumar Sarma, Devasish Chowdhury & Arun Chattopadhyay. (2005). A polyaniline- containing filter paper that acts as a sensor, acid, base and endpoint indicator and also filters acids and bases. Journal of Colloid and Interface Science 283: 153- 159.
Douglas, A. S. & Donald, M. W. (1971). Principles of Instrumental Analysis. Austin: Holt, Rinehart and Winston Inc.
Englebienne, P. & Weiland, M. (1996). Synthesis of water-soluble carboxylic and acetic acid-substituted poly(thiophenes) and the application of their photochemical properties in homogeneous competitive immunoassays. Journal of Chemical Communications 14: 1651- 1652.
Fabbri P. & Messori M. (2017). 5-Surface Modification of polymers: Chemical, Physical, and biological routes. Modification of polymer properties 109-130.
Fabio, L.L., Mario de Oliveira, N., Leornardo, G.P., Michel, R.M.B., Igor, P., Yvonne, P.M., Paulo, S.P.H., Luiz, H.C.M & Osvaldo, N.O.Jr. (2007). Nanoscale conformational ordering in polyanilines investigates by SAXS and AFM. Journal of Colloid and Interface Science 316: 376-387.
Fernandes, K.F., Lima, C.S., Pinho, H. & Collins, C.H. (2003). Immobilization of horseradish Peroxidase onto polyaniline polymers. Journal of Process Biochemistry 38:1379-1384.
Fernandes, K.F., Lima, C.S., Lopes, F.M. & Collins, C.H. (2004). Properties of Horseradish peroxidase immobilised onto polyaniline. Journal of Process Biochemistry 39:957-962.
Franchini, C., Reticcioli, M., Setvin, M. & Ulrike Diebold. (2021). Polarons in materials. Nat Rev Mater 6: 560–586.
Frend, L.B. & Suresh, S. (2003). Thin Film Materials: Stress, Defect Formation and Surface Evolution. Cambridge: Cambridge University Press.
Fou, A.C. & Rubner, M.F. (1995). Molecular- level processing of conjugated polymers. 2. Layer- by- Layer manipulation of in- situ polymerized p- type doped conducting polymers. Journal of Macromolecules 28:7115–7120.
Foulds, N.C. & Lowe, C.R. (1986). Enzyme entrapment in electrically conducting polymers. Immobilisation of glucose oxidase in polypyrrole and its application in amperometric glucose sensors. Journal of Chemical Society Faraday Transaction 1 82: 1259- 1264.
Fubini, B., Bolis, V., Bailes, M. & Stone, F.S. (1989). The reactivity of oxides with water vapour. Journal of Solid state ionics 32-33: 258- 272.
Gajhede, M., Peterson, T.N., Henriksen, A., Petersen, J.F.W., Dauter, Z., Wilson, K.S. & Thim, L. (1993). Pancreatic spasmolytic polypeptides: first three-dimensional structure of a member of the mammalian trefoil family of peptides. Structure 1: 253-262.
Gamry instruments. (1997). Potentiostat/ Galvanostat. http://www.gamry.com/Products/Potentiostats.htm [6 Mei 2011].
