Academic literature on the topic 'Ring disk electrode'
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Journal articles on the topic "Ring disk electrode"
Ma, Chaoxiong, Lawrence P. Zaino III, and Paul W. Bohn. "Self-induced redox cycling coupled luminescence on nanopore recessed disk-multiscale bipolar electrodes." Chemical Science 6, no. 5 (2015): 3173–79. http://dx.doi.org/10.1039/c5sc00433k.
Full textYabe, Hideki, Keiko Ema, and Yasuhiko Ito. "Rotating ring disk electrode in molten chloride." Electrochimica Acta 34, no. 10 (October 1989): 1479–83. http://dx.doi.org/10.1016/0013-4686(89)87191-9.
Full textZhang, Ming Fu, Huai Xin Guo, Hai Liang Zhang, Cheng Hai Xu, Ye Quan Zhao, and Jie Cai Han. "A Study on the Disk-Type Piezoelectric Transformer of Mg:LN Single Crystal." Advanced Materials Research 105-106 (April 2010): 278–81. http://dx.doi.org/10.4028/www.scientific.net/amr.105-106.278.
Full textIto, Yasuo, S. Hikino, and K. Ema. "Rotating Ring Disk Electrode in Molten Chloride Systems." Materials Science Forum 73-75 (January 1991): 409–14. http://dx.doi.org/10.4028/www.scientific.net/msf.73-75.409.
Full textNogami, Gyoichi, Yoshiaki Nishiyama, and Hiroyuki Nakamura. "New Approach to a Rotating Ring Disk Electrode." Journal of The Electrochemical Society 135, no. 4 (April 1, 1988): 877–84. http://dx.doi.org/10.1149/1.2095816.
Full textLiljeroth, Peter, Christoffer Johans, Christopher J. Slevin, Bernadette M. Quinn, and Kyösti Kontturi. "Micro ring–disk electrode probes for scanning electrochemical microscopy." Electrochemistry Communications 4, no. 1 (January 2002): 67–71. http://dx.doi.org/10.1016/s1388-2481(01)00276-4.
Full textOprisanu, Alexandra, Ioana Georgiana Lazar, Maria Daniela Pop, Eleonora Mihaela Ungureanu, Raluca Isopescu, and Liviu Birzan. "Polyazulenes Based Materials for Heavy Metal Ions Detection." Revista de Chimie 68, no. 10 (November 15, 2017): 2215–18. http://dx.doi.org/10.37358/rc.17.10.5858.
Full textDalton, F. "ECS Classics: Historical Origins of the Rotating Ring-Disk Electrode." Interface magazine 25, no. 3 (January 1, 2016): 50–59. http://dx.doi.org/10.1149/2.f03163if.
Full textKovács, Noémi, Mária Ujvári, Győző G. Láng, Peter Broekmann, and Soma Vesztergom. "Characterization of the Capacitance of a Rotating Ring–Disk Electrode." Instrumentation Science & Technology 43, no. 6 (April 18, 2015): 633–48. http://dx.doi.org/10.1080/10739149.2015.1038561.
Full textBélanger, Daniel, Jocelyn Nadreau, and Guy Fortier. "Rotating ring-disk electrode studies of polypyrrole-glucose oxidase biosensors." Electroanalysis 4, no. 10 (November 1992): 933–40. http://dx.doi.org/10.1002/elan.1140041004.
Full textDissertations / Theses on the topic "Ring disk electrode"
Nimley, Christopher. "Fabrication and Characterization of a Disk Ring Shaped Dual Nanometer-Sized Electrode and Its Application to Generation-Collection." Digital Commons @ East Tennessee State University, 2011. https://dc.etsu.edu/etd/1315.
Full textTran, Van Nhat Anh. "MONITORING OF SULFUR - CONTAING ADDITIVES IN COPPER ELECTRODEPOSITION BY ROTATING RING - DISK ELECTRODE AND COPPER ELECTRODEPOSITION FOR HYBRID BONDING." Doctoral thesis, Kyoto University, 2021. http://hdl.handle.net/2433/264677.
Full text新制・課程博士
博士(エネルギー科学)
甲第23396号
エネ博第423号
新制||エネ||80(附属図書館)
京都大学大学院エネルギー科学研究科エネルギー応用科学専攻
(主査)教授 平藤 哲司, 教授 土井 俊哉, 准教授 三宅 正男
学位規則第4条第1項該当
Doctor of Energy Science
Kyoto University
DGAM
Krarti, Mohamed Ali. "Contribution a l'etude de la passivite du fer et de sa rupture sur electrodes a disque et disque-anneau : facteurs electrochimiques et hydrodynamiques." Paris 7, 1988. http://www.theses.fr/1988PA077087.
Full textRyabova, Anna. "Électrocatalyse de la réduction de l'oxygène et du peroxyde d'hydrogène sur les oxydes de manganèse." Thesis, Strasbourg, 2018. http://www.theses.fr/2018STRAF011/document.
Full textManganese oxides are of great interest due to their catalytic activity towards the ORR (the oxygen reduction reaction) in alkaline media and can be used as noble metal-free materials for the cathode in liquid and polymer electrolyte alkaline fuel cells. The present thesis is devoted to the investigation of the ORR activity of manganese oxides. It was shown that Mn2O3 with bixbyite structure has a better catalytic activity toward the ORR in alkaline media than other investigated manganese oxide, the surface activity of Mn2O3 is only 4 times lower than that of Pt at an overvoltage of 0.3 V (RHE). The link between the structure of Mn oxides and the ORR activity is found: the specific ORR activity exponentially increases with the potential of the surface Mn(III)/Mn(IV) red-ox couple. To ensure the high electrocatalytic activity of Mn2O3, it is necessary to add carbon to the electrode composition, as well as to keep potential above 0.7 V (RHE)
Benzekri, Najoua. "Contribution au developpement de l'electrode disque-anneau en courant alternatif : applications aux mecanismes de dissolution et passivation anodique." Paris 6, 1988. http://www.theses.fr/1988PA066069.
Full textZhang, Fen. "Applications of Rotating Ring-Disc Electrode in CO2 Electrochemical Reduction in Aqueous Media." The Ohio State University, 2020. http://rave.ohiolink.edu/etdc/view?acc_num=osu1577812269219211.
Full textPoux, Tiphaine. "Study of the oxygen reduction on perovskite-type oxides in alkaline media." Thesis, Strasbourg, 2014. http://www.theses.fr/2014STRAF001/document.
Full textThe sluggish kinetics of the oxygen reduction reaction (ORR) is largely responsible for the energy losses in energy conversion systems such as fuel cells. Among possible inexpensive catalysts for the ORR, perovskite oxides are promising electrocatalysts in alkaline media. The present thesis is devoted to the investigation of the ORR activity, mechanism and stability of some Co and Mn-based perovskites. The rotating (ring) disk electrode (R(R)DE) studies of the ORR and the HO2- transformations on perovskite/carbon thin layers in NaOH electrolyte prove that O2 is reduced to OH- via a “series” pathway with the HO2- intermediate. For high oxide loadings, the formed HO2- species are further reduced to give a global 4 electron pathway. In these electrodes, carbon plays a dual role. It increases the electrocatalytic activity by improving the electrical contact and it is involved in the ORR mechanism by catalyzing the reduction of O2 into HO2-, especially for Co-based perovskites which display lower reaction rates than Mn-based perovskites
Podal, Pavel. "Studium vlastností katalyzátoru na bázi MnOx s využitím RRDE." Master's thesis, Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií, 2011. http://www.nusl.cz/ntk/nusl-219064.
Full textEngel, Hans-Andreas. "Electron spins in dots and rings: coherence, read out, and transport." Basel : Universität Basel, 2003. http://www.unibas.ch/diss/2003/DissB_6703.htm.
Full textLou, Fei. "Design, fabrication and characterization of plasmonic components based on silicon nanowire platform." Doctoral thesis, KTH, Optik och Fotonik, OFO, 2014. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-143953.
Full textQC 20140404
Books on the topic "Ring disk electrode"
Parikh, Raju S. Orthogonal collocation simulation of the rotating ring disk electrode and its application in the anodic dissolution of chalcocite. 1988.
Find full textOrth, R. J. Rotating ring disk electrodes: A technique for evaluating the kinetics for systems with overlapping ring currents. 1988.
Find full textBook chapters on the topic "Ring disk electrode"
Sequeira, César A. C. "Intermediates in Ring-Disc Electrode Processes." In Materials Science Forum, 152–63. Stafa: Trans Tech Publications Ltd., 2007. http://dx.doi.org/10.4028/0-87849-438-3.152.
Full textFijalkowski, B. T. "Electro-Mechanical Friction Disc, Ring and Drum Brakes." In Automotive Mechatronics: Operational and Practical Issues, 529–39. Dordrecht: Springer Netherlands, 2010. http://dx.doi.org/10.1007/978-94-007-0409-1_34.
Full text"Rotating Disk Electrode/Rotating Ring-Disk Electrode." In PEM Fuel Cell Diagnostic Tools, 511–34. CRC Press, 2011. http://dx.doi.org/10.1201/b11100-28.
Full textJia, Zheng, Geping Yin, and Jiujun Zhang. "Rotating Ring-Disk Electrode Method." In Rotating Electrode Methods and Oxygen Reduction Electrocatalysts, 199–229. Elsevier, 2014. http://dx.doi.org/10.1016/b978-0-444-63278-4.00006-9.
Full textVesztergom, S. "Rotating Disk and Ring–Disk Electrodes." In Encyclopedia of Interfacial Chemistry, 421–44. Elsevier, 2018. http://dx.doi.org/10.1016/b978-0-12-409547-2.13563-2.
Full textPLETCHER, D., R. GREFF, R. PEAT, L. M. PETER, and J. ROBINSON. "Convective diffusion systems – the rotating disc and ring-disc electrodes." In Instrumental Methods in Electrochemistry, 113–48. Elsevier, 2010. http://dx.doi.org/10.1533/9781782420545.113.
Full textConference papers on the topic "Ring disk electrode"
Mas-Cabo, Javier, Yiyao Ye-Lin, Carlos Benalcazar-Parra, José Alberola-Rubio, Alfredo Perales, Javier Garcia-Casado, and Gema Prats-Boluda. "Electrohysterogram Signals from Patients with Threatened Preterm Labor: Concentric Ring Electrode Vs Disk Electrode Recordings." In 10th International Conference on Bio-inspired Systems and Signal Processing. SCITEPRESS - Science and Technology Publications, 2017. http://dx.doi.org/10.5220/0006155000780083.
Full textHaddix, Chase, Amir F. Al-Bakri, Walter Besio, and Sridhar Sunderam. "A Comparison of EEG Alpha Rhythm Detection by Tripolar Concentric Ring Electrodes and Conventional Disk Electro des." In 2018 IEEE International Symposium on Signal Processing and Information Technology (ISSPIT). IEEE, 2018. http://dx.doi.org/10.1109/isspit.2018.8642782.
Full textMakeyev, Oleksandr, Yacine Boudria, Zhenghan Zhu, Thomas Lennon, and Walter G. Besio. "Emulating conventional disc electrode with the outer ring of the tripolar concentric ring electrode in phantom and human electroencephalogram data." In 2013 IEEE Signal Processing in Medicine and Biology Symposium (SPMB). IEEE, 2013. http://dx.doi.org/10.1109/spmb.2013.6736778.
Full textNguyen, Thach G., Ravi S. Tummidi, Thomas Koch, and Arnan Mitchell. "Thin-Ridge SOI Disk and Ring Resonators with “Magic Radius” and “Magic Width” Phenomena." In Conference on Lasers and Electro-Optics. Washington, D.C.: OSA, 2009. http://dx.doi.org/10.1364/cleo.2009.ctue5.
Full textMakeyev, Oleksandr, Thomas Lennon, Yacine Boudria, Zhenghan Zhu, and Walter G. Besio. "Frequency domain synchrony between signals from the conventional disc electrode and the outer ring of the tripolar concentric ring electrode in human electroencephalogram data." In 2014 40th Annual Northeast Bioengineering Conference (NEBEC). IEEE, 2014. http://dx.doi.org/10.1109/nebec.2014.6972865.
Full textEilanlou, A. Amani, Stanley Tang, Naveed Abbas, Claude Aguergaray, Yasuo Nabekawa, and Neil G. R. Broderick. "An Ultrafast Ring Thin-Disk Laser Oscillator with a Repetition Rate Beyond 120 MHz." In Conference on Lasers and Electro-Optics/Pacific Rim. Washington, D.C.: OSA, 2020. http://dx.doi.org/10.1364/cleopr.2020.c8e_4.
Full textEilanlou, A. Amani, Yasuo Nabekawa, Makoto Kuwata-Gonokami, and Katsumi Midorikawa. "Development of a sub-400-fs high-average-power thin-disk ring oscillator." In 2013 Conference on Lasers and Electro-Optics Pacific Rim (CLEO-PR). IEEE, 2013. http://dx.doi.org/10.1109/cleopr.2013.6600307.
Full textJurgelucks, Benjamin, Nadine Feldmann, Leander Claes, Bernd Henning, and Andrea Walther. "Material parameter determination of a piezoelectric disc with triple-ring-electrodes for increased sensitivity." In 2017 ICU Honolulu: Sixth International Congress on Ultrasonics. Acoustical Society of America, 2017. http://dx.doi.org/10.1121/2.0000707.
Full textKhmelev, Vladimir N., Andrey V. Shalunov, Roman N. Golykh, Roman S. Dorovskikh, Viktor A. Nesterov, and Galina A. Bobrova. "Study of the influence of secondary modes of vibrations on the uniformity of the distribution of working ring disk of ultrasonic disk radiators." In 2017 18th International Conference of Young Specialists on Micro/Nanotechnologies and Electron Devices (EDM). IEEE, 2017. http://dx.doi.org/10.1109/edm.2017.7981758.
Full textMakeyev, Oleksandr, Colin Lee, and Walter G. Besio. "Proof of concept Laplacian estimate derived for noninvasive tripolar concentric ring electrode with incorporated radius of the central disc and the widths of the concentric rings." In 2017 39th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC). IEEE, 2017. http://dx.doi.org/10.1109/embc.2017.8036955.
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