Books on the topic 'Electrochemical technique'

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1

Lin, Changjian. An electrochemical technique for rapidly evaluating protective coatings on metals. Gaithersburg, MD: U.S. Dept. of Commerce, National Institute of Standards and Technology, 1988.

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2

Lin, Changjian. An electrochemical technique for rapidly evaluating protective coatings on metals. Gaithersburg, MD: U.S. Dept. of Commerce, National Institute of Standards and Technology, 1988.

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3

Sit, Shirley M. An electrochemical technique for measuring thin liquid films during squeeze flows. Ottawa: National Library of Canada, 1990.

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4

M.J.U.T. van Wijngaarden. The development of an electrochemical technique for the determinationof chromium oxide activities in molten slag systems. Randburg, South Africa: Council For Mineral Technology, 1988.

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5

Martin, Rachel D. Development and application of dynamic electrochemical techniques. [s.l.]: typescript, 1997.

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6

Frederick, Van Staden Jacobus, and Aboul-Enein Hassan Y, eds. Electrochemical sensors in bioanalysis. New York: Marcel Dekker, 2001.

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7

Visy, Csaba. In situ Combined Electrochemical Techniques for Conducting Polymers. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-53515-9.

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8

Mojica-Calderon, C. Electrochemical techniques in hot corrosion of high temperature materials. Manchester: UMIST, 1992.

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9

Papavinasam, Sankara. Advances in electrochemical techniques for corrosion monitoring and measurement. Edited by ASTM Committee G-1 on Corrosion of Metals. West Conshohocken, PA: ASTM International, 2009.

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10

Papavinasam, Sankara, Neal S. Berke, and Sean Brossia, eds. Advances in Electrochemical Techniques for Corrosion Monitoring and Measurement. 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959: ASTM International, 2009. http://dx.doi.org/10.1520/stp1506-eb.

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11

Mäkelä, Kari. Development of techniques for electrochemical studies in power plant environments. Espoo [Finland]: Technical Research Centre of Finland, 2000.

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12

Broadening electrochemical horizons: Principles and illustration of voltammetric and related techniques. Oxford: Oxford University Press, 2002.

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13

Papavinasam, Sankara, Raul B. Rebak, Lietai Yang, and Neal S. Berke, eds. Advances in Electrochemical Techniques for Corrosion Monitoring and Laboratory Corrosion Measurements. 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959: ASTM International, 2019. http://dx.doi.org/10.1520/stp1609-eb.

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14

NATO Advanced Study Institute on Electrochemical and Optical Techniques for the Study and Monitoring of Metallic Corrosion (1989 Viana do Castelo, Portugal). Electrochemical and optical techniques for the study and monitoring of metallic corrosion. Dordrecht: Kluwer Academic Publishers, 1991.

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15

Ferreira, Mário G. S., and Carlos A. Melendres, eds. Electrochemical and Optical Techniques for the Study and Monitoring of Metallic Corrosion. Dordrecht: Springer Netherlands, 1991. http://dx.doi.org/10.1007/978-94-011-3636-5.

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16

Electroanalytical techniques in clinical chemistry and laboratory medicine. New York, N.Y: VCH, 1988.

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17

Symposium, on Diagnostic Techniques for Semiconductor Materials and Devices (1997 Montréal Québec). Proceedings of the Electrochemical Society Symposium on Diagnostic Techniques for Semiconductor Materials and Devices. Pennington, NJ: Electrochemical Society, 1997.

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18

Kavvada, Aristea. Combined X-ray and electrochemical techniques to address structure-property relationships in electroactive polymer films. Leicester: De Montfort University, 2002.

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19

Mirrezaie, Seyed Rasoul. Some aspects of the corrosion of admiralty brass in saline environments, studied by physical and electrochemical techniques. Uxbridge: Brunel University, 1985.

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20

ALTECH 99 (1999 Leuven, Belgium). Analytical and diagnostic techniques for semiconductor materials, devices and processes: Joint proceedings of the symposia on ALTECH 99, satellite symposium to ESSDERC 99, Leuven, Belgium [and] the Electrochemical Society Symposium on Diagnostic Techniques for Semiconductor Materials and Devices. Edited by Kolbesen Bernd O, Electrochemical Society Electronics Division, Society of Photo-optical Instrumentation Engineers., Electrochemical Society Meeting, Denki Kagaku Kyōkai (Japan). Fall Meeting, Electrochemical Society Symposium on Diagnostic Techniques for Semiconductor Materials and Devices (1999 : Honolulu, Hawaii), and European Solid State Device Research Conference (29th : 1999 : Leuven, Belgium). Pennington, N.J: Electrochemical Society, 1999.

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21

ALTEC 2003 (2003 Paris, France). Analytical and diagnostic techniques for semiconductor materials, devices, and processes: Joint proceedings of symposia on: ALTEC 2003 : Analytical techniques for semiconductor materials and process characterization IV : Paris, France ; and the 202nd Meeting of the Electrochemical Society : Diagnostic techniques for semiconductor materials and devices VI : Salt Lake City, Utah. Edited by Kolbesen Bernd O, Electrochemical Society Electronics Division, Electrochemical Society Meeting, Electrochemical Society Meeting, Society of Photo-optical Instrumentation Engineers, and Symposium on Diagnostic Techniques for Semiconductor Materials and Devices (6th : 2002 : Salt Lake City, Utah). Pennington, N.J: Electrochemical Society, 2003.

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22

Coșofreț, Vasile V. Pharmaceutical applications of membrane sensors. Boca Raton: CRC Press, 1992.

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23

Geological Survey (U.S.), ed. Ampere-hour monitor for the electrochemical exploration technique. [Denver, Colo.?]: U.S. Dept. of the Interior, Geological Survey, 1989.

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24

Ampere-hour monitor for the electrochemical exploration technique. [Denver, Colo.?]: U.S. Dept. of the Interior, Geological Survey, 1989.

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25

Ampere-hour monitor for the electrochemical exploration technique. [Denver, Colo.?]: U.S. Dept. of the Interior, Geological Survey, 1989.

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26

Ampere-hour monitor for the electrochemical exploration technique. [Denver, Colo.?]: U.S. Dept. of the Interior, Geological Survey, 1989.

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27

Orth, R. J. Rotating ring disk electrodes: A technique for evaluating the kinetics for systems with overlapping ring currents. 1988.

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28

1950-, Junter Guy Alain, ed. Electrochemical detection techniques in the applied biosciences. Chichester: Ellis Horwood, 1988.

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29

1943-, Joseph M. H., ed. Monitoring neurotransmitter release during behaviour. Weinheim, Federal Republic of Germany: VCH, 1986.

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30

J, Ding R., George C. Marshall Space Flight Center., and United States. National Aeronautics and Space Administration., eds. A study of friction stir welded 2195 Al-Li alloy by the scanning reference electrode technique. [Huntsville, Ala.]: National Aeronautics and Space Administration, Marshall Space Flight Center, 1998.

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31

George C. Marshall Space Flight Center., ed. Study of localized corrosion in aluminum alloys by the scanning reference electrode technique. MSFS, Ala: National Aeronautics and Space Administration, Marshall Space Flight Center, 1995.

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32

Study of localized corrosion in aluminum alloys by the scanning reference electrode technique. MSFS, Ala: National Aeronautics and Space Administration, Marshall Space Flight Center, 1995.

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33

Chatwal, G. R. Electroanalytical Techniques : Electrochemical Techniques. Himalaya Publishing House, 1996.

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34

(Editor), W. J. Lorenz, and Waldfried Plieth (Editor), eds. Electrochemical Nanotechnology: In-Situ Local Probe Techniques at Electrochemical Interfaces (Electrochemical Nanotechnology). Wiley-VCH Verlag GmbH, 1999.

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35

Robert, Baboian, and National Association of Corrosion Engineers. Unit Committee T-3L on Electrochemical and Electrical Techniques for Corrosion Measurement and Control., eds. Electrochemical techniques for corrosion engineering. Houston, Tex: National Association of Corrosion Engineers, 1986.

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36

Umasankar, Yogeswaran, Kumar S. Ashok, and Chen Shen-Ming, eds. Nanostructured materials for electrochemical biosensors. Hauppauge, NY: Nova Science Publishers, 2009.

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37

G, Kelly R., ed. Electrochemical techniques in corrosion science and engineering. New York, NY: Marcel Dekker, 2003.

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38

Electrochemical Techniques in Corrosion Science and Engineering. New York: Marcel Dekker, Inc., 2003.

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39

Scully, John R., Robert G. Kelly, David Shoesmith, and Rudolph G. Buchheit. Electrochemical Techniques in Corrosion Science and Engineering. Taylor & Francis Group, 2002.

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40

Scully, John R., Robert G. Kelly, David Shoesmith, and Rudolph G. Buchheit. Electrochemical Techniques in Corrosion Science and Engineering. Taylor & Francis Group, 2002.

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41

Scully, John R., Robert G. Kelly, David Shoesmith, and Rudolph G. Buchheit. Electrochemical Techniques in Corrosion Science and Engineering. Taylor & Francis Group, 2002.

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42

Scully, John R., Robert G. Kelly, David Shoesmith, and Rudolph G. Buchheit. Electrochemical Techniques in Corrosion Science and Engineering. Taylor & Francis Group, 2002.

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43

1944-, Kissinger Peter T., and Heineman William R, eds. Laboratory techniques in electroanalytical chemistry. 2nd ed. New York: Marcel Dekker, Inc., 1996.

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44

C, Michael Adrian, and Borland Laura M, eds. Electrochemical methods for neuroscience. Boca Raton: CRC Press/Taylor & Francis, 2007.

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45

Michael, Adrian C., and Laura Borland. Electrochemical Methods for Neuroscience. Taylor & Francis Group, 2006.

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46

Stefan, Raluca-Ioana. Electrochemical Sensors in Bioanalysis. CRC, 2001.

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47

Visy, Csaba. In situ Combined Electrochemical Techniques for Conducting Polymers. Springer, 2017.

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48

1936-, Varma Ravi, Selman J. R, and Electrochemical Society, eds. Techniques for characterization of electrodes and electrochemical processes. New York: Wiley, 1991.

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49

Kyotani, T., and H. Orikasa. Templated carbon nanotubes and the use of their cavities for nanomaterial synthesis. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533060.013.11.

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This article focuses on templated carbon nanotubes (CNTs) and how their cavities can be used for the synthesis of nanomaterials. In particular, it demonstrates how effectively the CNTs can be functionalized by the template carbonization technique. The article first describes the method for synthesizing CNTs and carbon nano-test-tubes (CNTTs). It then considers the controlled filling of magnetic materials into CNTTs, taking into account the electrochemical deposition of Ni-Fe alloy and the magnetic properties of NiFe-filled CNTTs. It also examines the synthesis of water-dispersible and magnetically responsive CNTTs, with emphasis on water dispersibility and the effect of magnetic interaction. Finally, it shows how the cavities of templated CNTs can be utilized as a reaction field for the hydrothermal synthesis of one-dimensional nanomaterials.
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50

Laboratory Techniques in Electroanalytical Chemistry, Second Edition, Revised and Expanded. 2nd ed. CRC, 1996.

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