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Featured researches published by Fumitada Iguchi.


Journal of Materials Chemistry | 2011

Direct evidence of potential barriers at grain boundaries in Y-doped BaZrO3 from dc-bias dependence measurements

Fumitada Iguchi; Chien-Ting Chen; Hiroo Yugami; Sangtae Kim

Y-doped BaZrO3 (BZY) is an outstanding proton conductor under wet atmosphere at relatively low temperatures (<600 °C). Dense polycrystalline ceramics of this material used in intermediate-temperature solid oxide fuel cells as solid electrolytes, however, suffer from uniquely high resistance across grain boundaries in the materials. It has long been speculated that such high resistance at the grain boundaries is originated from potential barriers which may be formed at the grain boundaries. Here we provide direct experimental evidence that Schottky-type potential barriers indeed exist at grain boundaries in BZY. The results of our study on dc-bias dependence of grain-boundary impedance in 5, 3 and 2 mol% Y-doped BaZrO3 (BZY5, BZY3, and BZY2, respectively) clearly show that the relation between the current across a grain boundary and the applied dc-bias is ohmic where the dc-bias is lower than the thermal voltage, while that becomes superohmic at sufficiently high biases. In addition, it is found that the capacitance of the grain boundary decreases with the bias. These observations are consistent with what is expected from the thermionic emission mechanism for a current across a potential barrier. Hence we unambiguously verified that Schottky-type potential barriers are formed at grain boundaries in BZY to serve as extra internal resistors, and are responsible for high grain-boundary resistance observed in polycrystalline BZY ceramics. The barrier heights estimated for BZY5, BZY3, and BZY2 are 0.51, 0.85, and 0.95 V, respectively.


214th ECS Meeting | 2009

Effectiveness of Ga Additive to Sinterability and Electrical Properties on Y-Doped BaZrO3 Proton Conductors Sintered at 1600{degree sign}C

Fumitada Iguchi; Noriko Sata; Hiroo Yugami


The Proceedings of Mechanical Engineering Congress, Japan | 2017

Chemical Expansion Properties in Rare-earth-doped Ceria Composites

Fumitada Iguchi; Tomoya Abe; Keiji Yashiro; Takashi Nakamura


231st ECS Meeting (May 28 - June 1, 2017) | 2017

(Invited) Triple Phase Boundary Reaction in a Mixed-Conducting SOFC Cathode

Koji Amezawa; Yoshinobu Fujimaki; Keita Mizuno; Yuta Kimura; Takashi Nakamura; Kiyofumi Nitta; Yasuko Terada; Fumitada Iguchi; Hiroo Yugami; Keiji Yashiro; Tatsuya Kawada


Transactions of the JSME (in Japanese) | 2016

Energy recovery in the high temperature furnace using a high-emittance fiber (HEF) unit

Takumi Kojima; Jun Sakai; Makoto Shimizu; Fumitada Iguchi; Hiroo Yugami; Hironaga Iguchi; Terumi Hisayuki; Narihito Nakagawa; Takemi Yamamura


The Proceedings of Conference of Tohoku Branch | 2016

187 Heat Transfer Enhancement Technique Using Control of Thermal Radiation Spectrum for Electronic Devices Encapsulated with Resin

Shinichiro Tsuda; Makoto Shimizu; Fumitada Iguchi; Hiroo Yugami


PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016

Influence of a Ni Metal Phase and Geometrical Structures of YSZ in Ni-YSZ SOFC Anode to Its Mechanical Properties

Fumitada Iguchi; Hiroo Yugami; Makoto Shimizu; Yoshiki Akaza; Sarana Akrasevee; Yutaro Miyoshi


227th ECS Meeting (May 24-28, 2015) | 2015

(Invited) Determination of Effective Reaction Area in a Mixed-Conducting SOFC Cathode

Koji Amezawa; Yoshinobu Fujimaki; Takashi Nakamura; Katherine Develos Bagarinao; K. Yamaji; Kiyofumi Nitta; Yasuko Terada; Fumitada Iguchi; Keiji Yashiro; Hiroo Yugami; Tatsuya Kawada


電気化学および工業物理化学 | 2014

Compatibility and Performance of La₀.₆₇₅Sr₀.₃₂₅Sc₀.₉₉Al₀.₀₁O₃ Perovskite-type Oxide as an Electrolyte Material for SOFCs (Solid State Ionics : Basics and Application for New Energetic Technologies Visions)

Hisashi Kato; Fumitada Iguchi; Hiroo Yugami


The Proceedings of the Materials and Mechanics Conference | 2014

OS1613 Electrical properties of YSZ under in-plane compressive stress

Fumitada Iguchi; Takuya Yamane; Makoto Shimizu; Hiroo Yugami

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Hiroo Yugami

Tokyo University of Science

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Noriko Sata

German Aerospace Center

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Yuki Nagao

Japan Advanced Institute of Science and Technology

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Toshiyuki Hashida

Japan Atomic Energy Research Institute

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