makoto uchida email address
Connecting decision makers to a dynamic network of information, people and ideas, Bloomberg quickly and accurately delivers business and financial information, news and insight around the world. Makoto Uchida graduated with a degree in theology from Doshisha University in Japan. What is Makoto Uchida’s business email address? In situ confocal micro-Raman spectroscopy was used to probe the water distribution in an electrolyte membrane in a polymer electrolyte fuel cell (PEFC) under various cell-operating conditions. Yokohama, 220-8686 Director, executive officer, president and CEO, Nissan holds inaugural press conference for new CEO Makoto Uchida, Nissan unveils transformation plan to prioritize sustainable growth and profitability, Director, representative executive officer, president and CEO, Representative executive officer, president and CEO. News emerged late on Oct 8, 2019, that Makoto Uchida had been chosen as Nissan 's new global chief. We developed a new CO2 visualization system using a CO2-sensitive dye for detecting the generation of CO2 during the corrosion processes in real time and with spatial... Real-Time Visualization of CO2 Generated by Corrosion of the Carbon Support in a PEFC Cathode

Uchida has quite the ship to right after scores of drama at the automaker. Uchida served in a variety of positions at both Nissan and the Alliance throughout his career. Acta, 110, 316-324 (2013), New Evaluation Method for Effectiveness of Electrocatalysts under PEFC Operation Conditions ( 216th Meeting of The Electrochemical Society Vienna, Austria(1024) ) ( 2009 ), R&D Activities on Fuel Cells ( f-cell2009, The fuel cell 9th Forum for Producers and Users ) ( 2009 ), New Evaluation Method for Effectiveness of Platinum/Carbon Electrocatalysts under PEFC Operation Conditions (LANL-ASIT-FCcubic-NEDO Workshop) (2010.8), Cutting Edge Technologies for PEM Fuel Cells New Evaluation Method for Effectiveness of Platinum/Carbon Electrocatalysts under PEFC Operation Conditions (f-cell 2010) (2010.9), The Effectiveness of Platinum/Carbon Electrocatalysts: Dependence on Catalyst Layer Thickness and Pt Alloy Catalytic Effects ( 220th ECS Boston 2011 ) ( 2011 ), The Effectiveness of Pt/C Electrocatalysts: Dependence on Catalyst Layer Thickness and Pt Alloy Catalytic Effects ( f-cell2011 ) ( 2011 ), The effect of Pt particle distribution of various supported electrocatalyst on Pt utilization of membrane-electrode assembly ( 222th ECS Honolulu 2012(PRIME2012) (2012)), Effect of the distribution states of Pt nanoparticles supported on carbon substrates upon the utilization for oxygen reduction reaction in polymer electrolyte fuel cells, (6th International Conference on Polymer Batteries, and Fuel Cells, Ulm, Germany), (2013.6), First on the list of registration numbers: 14, First on the list of registration numbers: 21. © 2008-2020 ResearchGate GmbH. Since 1999, Nissan has been part of the Renault–Nissan Alliance, a partnership between Nissan and Renault, the largest automobile manufacturer in France. Chloromethylation and quaternization reactions of th... Synthesis and properties of anion conductive aromatic block copolymers, QPE-bl-3, QPE-bl-3 M2, and M4, containing fluorenylidene biphenylene groups as scaffold for ammonium groups are described. The value of the electrochemical active surface area (ECA) of 65 m2 g−1 for the S... We investigated effects of microstructure of a catalyst layer on a performance of polymer electrolyte fuel cell (PEFC). The microstru... Join ResearchGate to find the people and research you need to help your work. We also have examined the dependence of the values of EfPt on experimental parameters, including the ionomer content in the catalyst layer. Makoto UCHIDA of Osaka City University, Osaka (OCU) | Read 151 publications | Contact Makoto UCHIDA Each component of the double layer membrane showed similar phase-separated morphologies to those of the original membranes. ionomer (PFSI) colloid. Makoto Uchida is a Nissan Motor Co., Ltd. director, representative executive officer, president and chief executive officer. The gradient of pO2 inside a channel was clearly... We evaluated the cathodic activity and durability of Pt/Ta-SnO2 − δ catalysts for the cathodes of polymer electrolyte fuel cells (PEFCs). High molecular weight... We have prepared Pt nanoparticles supported on titanium carbide (TiC) (Pt/TiC) as an alternative cathode catalyst with high durability at high potentials for polymer electrolyte fuel cells. Nishi-Ku Makoto Uchida We synthesized Pt and PtRu catalysts supported on Nb-doped SnO2-δ (Pt/Sn0.99Nb0.01O2 δ, PtRu/Sn0.99Nb0.01O2-δ) for direct oxidation fuel … Who are Makoto Uchida’s peers at other companies? The conventional approach has been to use radical scavengers incorporated into the PEM, but performance is decreased. Which industry does Makoto Uchida work in? Nissan was the sixth largest automaker in the world behind Toyota, General Motors, Volkswagen Group, Hyundai Motor Group, and Ford in 2012. In his most recent role, Uchida led Nissan’s China business, serving as senior vice president of Nissan, chairperson of the Management Committee for China (MC China), and president of Dongfeng Motor Co., Ltd., the joint venture between Nissan and Dongfeng Motor Group in China. The objective of this research was to assess the feasibility of the use of highly corrosion resistant graphitized carbon (GC) as a support for Pt nanoparticles in polymer electrolyte fuel cells and to assess the role of the state of Pt dispersion in the maintenance of performance. He holds a degree in Theology. Career. The Pt loading on the... During start-up/shut-down processes of a polymer electrolyte fuel cell, platinum particles are lost from the catalyst layer at the cathode due to corrosion of the carbon supports. Uchida graduated from Doshisha University in 1991. Makoto's personal network of family, friends, associates & neighbors include Miwako Uchida, Michael Fiore, Ki Choi, John Wasibia and Gurpreet Singh. The second best result is Makoto Uchida age 50s in Edgewater, NJ in the Edgewater neighborhood. During this time, Uchida expanded Nissan’s presence in the Chinese market. These “interim” CV measurements, which are generally conducted after a certain number... We report herein temperature- and humidity-controlled small-angle X-ray scattering (SAXS) analyses of proton-conductive ionomer membranes. Graduated School of Engineering Science (Master Course), Yamanashi University, Matsushita Electric Industrial Co., Ltd. (Panasonic Company), Matsushita Battery Industrial Co., Ltd. (Panasonic Corporation Energy Company), Manager, Professor, University of Yamanashi, Technical Development Award of the Electrochemical Society of Japan, Research and development of MEA for Polymer Electrolyte Fuel Cells, Fuel cells, Electrocatalysts, Gas-Diffusion Electrode, Membrane electrode assembly, Application of a backward feed and exhaust (BFE) type methanol anode to zinc electrowinningm, Watanabe, M., Uchida, M., Motoo, S. Journal of Electroanalytical Chemistry, Volume 205, Issue 1-2, 25 June 1986, Pages 125-133, Applications of the gas diffusion electrode to a backward feed and exhaust (BFE) type methanol anode, Watanabe, M., Uchida, M., Motoo, S., Jornal of Electroanalytical Chemistry, Volume 199, Issue 2, 10 March 1986, Pages 311-322, Preparation of highly dispersed Pt + Ru alloy clusters and the activity for the electrooxidation of methanol, Watanabe, M., Uchida, M., Motoo, S., Journal of Electroanalytical Chemistry, Volume 229, Issue 1-2, 10 August 1987, Pages 395-406, Reduction of the cell voltage in copper electrowinning by using the methanol BFE anode, Watanabe, M.,Uchida, M., Motoo, S, Journal of Electroanalytical Chemistry, Volume 246, Issue 2 (1988) 313-319, New Preparation Method for Polymer-Electrolyte Fuel Cells , Uchida, Makoto, Aoyama, Yuko, Eda, Nobuo, Ohta, Akira, Journal of the Electrochemical Society, Volume 142, Issue 2, February 1995, Pages 463-468, Influences of Both Carbon Supports and Heat-Treatment of Supported Catalyst on Electrochemical Oxidation of Methanol, Uchida, Makoto, Aoyama, Yuko, Tanabe, Mieko, Yanagihara, Nobuyuki, Eda, Nobuo, Ohta, Akira, Journal of the Electrochemical Society, Volume 142, Issue 8, August 1995, Pages 2572-2576, Investigation of the Micro-structure in the Catalyst Layer and Effects of both Perfluorosulfonate-ionomer and PTFE-loaded Carbon on Catalyst Layer of Polymer Electrolyte Fuel Cells, Uchida, Makoto, Aoyama, Yuko, Eda, Nobuo, Ohta, Akira, Journal of the Electrochemical Society, Volume 142, Issue 12, December 1995, Pages 4143-4149, Effects of Microstructure on Carbon Support in the Catalyst Layer on the Performance of Polymer Electrolyte Fuel Cells, Uchida, M., Fukuoka, Y., Sugawara, Y., Eda, N., Ohta, A., Journal of the Electrochemical Society, Volume 143, Issue 7, July 1996, Pages 2245-2252, Improved Preparation Process of Very-Low-Platinum-Loading Electrodes for Polymer Electrolyte Fuel Cells, Uchida, M., Fukuoka, Y., Sugawara, Y., Ohora, H., Ohta, A., Journal of the Electrochemical Society, Volume 145, Issue 11, November 1998, Pages 3708-3713, Effects of microstructure in catalyst layer on the performance of PEFC, Morita, J., Yasumoto, E., Sugawara, Y., Uchida, M., Gyoten, H., Studies in Surface Science and Catalysis, Volume 132, 2001, Pages 959-962, Gas diffusion electrodes containing sulfonated poly (arylene ether) ionomer for PEFCs Part 1.
In the case of a Pt catalyst supported on the semiconducting oxide Nb-doped Sn... We have developed IrOx/M-SnO2 (M = Nb, Ta, and Sb) anode catalysts, IrOx nanoparticles uniformly dispersed on M-SnO2 supports with fused-aggregate structures, which make it possible to evolve oxygen efficiently, even with a reduced amount of noble metal (Ir) in proton exchange membrane water electrolysis. We investigate the effects of high oxygen permeability ionomers and ion exchange capacity (IEC) o... Mitigating catalyst corrosion is crucial for the commercial success of polymer electrolyte fuel cells (PEFCs). View Makoto Uchida's business profile as Representative Executive Officer, President & Chief Executive Officer at Nissan Motor Corp. Find contact's direct phone number, email address, work history, and more.

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