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Yasutoshi Iriyama

Yasutoshi Iriyama

D-Index & Metrics

Materials Science

D-Index
62
Citations
12730
World Ranking
6532
National Ranking
333

Chemistry

D-Index
62
Citations
12581
World Ranking
8908
National Ranking
620

Overview

Yasutoshi Iriyama is a researcher affiliated with Nagoya University in Japan. Their work predominantly falls within the field of Engineering, with a particular focus on Electrical and Electronic Engineering. The research also spans Automotive Engineering, Materials Chemistry, Mechanical Engineering, and Surfaces, Coatings and Films as subfields of study.

The main topics covered in Yasutoshi Iriyama's research include:

  • Advancements in Battery Materials
  • Advanced Battery Materials and Technologies
  • Advanced Battery Technologies Research
  • Thermal Expansion and Ionic Conductivity
  • Extraction and Separation Processes
  • Graphene Research and Applications
  • Advanced Battery Technologies Research

Their recent scientific papers illustrate a focus on battery materials and solid-state battery technologies. Key publications include:

  • "Electron and Ion Transfer across Interfaces of the NASICON-Type LATP Solid Electrolyte with Electrodes in All-Solid-State Batteries: A Density Functional Theory Study via an Explicit Interface Model" (2020, ACS Applied Materials & Interfaces)
  • "Room temperature synthesis of anti-perovskite structured Li2OHBr" (2020, Solid State Ionics)
  • "Temperature Effects on Li Nucleation at Cu/LiPON Interfaces" (2020, ACS Applied Materials & Interfaces)
  • "Room Temperature Operation and High Cycle Stability of an All-Solid-State Lithium Battery Fabricated by Cold Pressing Using Soft Li2OHBr Solid Electrolyte" (2021, Energy & Fuels)
  • "STEM-EELS Spectrum Imaging of an Aerosol-Deposited NASICON-Type LATP Solid Electrolyte and LCO Cathode Interface" (2021, ACS Applied Energy Materials)

Yasutoshi Iriyama frequently collaborates with several peers in their field. Notable co-authors include:

  • Munekazu Motoyama (22 collaborations)
  • Takayuki Yamamoto (14 collaborations)
  • Miyuki Sakakura (9 collaborations)
  • Takeshi Yajima (8 collaborations)
  • Satoshi Yamamoto (8 collaborations)

The researcher has published extensively in the following venues:

  • ECS Meeting Abstracts
  • ACS Applied Materials & Interfaces
  • ACS Applied Energy Materials
  • Solid State Ionics
  • Communications Materials

Best Publications

  • Solvated Li-Ion Transfer at Interface Between Graphite and Electrolyte

    Takeshi Abe;Hideo Fukuda;Yasutoshi Iriyama;Zempachi Ogumi

  • Alkaline direct alcohol fuel cells using an anion exchange membrane

    Koji Matsuoka;Yasutoshi Iriyama;Takeshi Abe;Masao Matsuoka

  • Effects of Some Organic Additives on Lithium Deposition in Propylene Carbonate

    Ryo Mogi;Minoru Inaba;Soon-Ki Jeong;Yasutoshi Iriyama

  • Characterization of the interface between LiCoO2 and Li7La3Zr2O12 in an all-solid-state rechargeable lithium battery

    Ki Hyun Kim;Yasutoshi Iriyama;Kazuo Yamamoto;Shota Kumazaki

  • Durability of perfluorinated ionomer membrane against hydrogen peroxide

    Taro Kinumoto;Taro Kinumoto;Minoru Inaba;Yoko Nakayama;Kazuhito Ogata

  • Kinetics of lithium ion transfer at the interface between graphite and liquid electrolytes: effects of solvent and surface film.

    Yuki Yamada;Yasutoshi Iriyama;Takeshi Abe;Zempachi Ogumi

  • Surface Film Formation on a Graphite Negative Electrode in Lithium-Ion Batteries: Atomic Force Microscopy Study on the Effects of Film-Forming Additives in Propylene Carbonate Solutions

    Soon-Ki Jeong;Minoru Inaba;Ryo Mogi;Yasutoshi Iriyama

  • Raman study of layered rock‐salt LiCoO2 and its electrochemical lithium deintercalation

    Minoru Inaba;Yasutoshi Iriyama;Zempachi Ogumi;Yasufumi Todzuka

  • Dynamic Visualization of the Electric Potential in an All‐Solid‐State Rechargeable Lithium Battery

    Kazuo Yamamoto;Yasutoshi Iriyama;Toru Asaka;Tsukasa Hirayama

  • Lithium-Ion Transfer at the Interface Between Lithium-Ion Conductive Ceramic Electrolyte and Liquid Electrolyte-A Key to Enhancing the Rate Capability of Lithium-Ion Batteries

    Takeshi Abe;Fumihiro Sagane;Masahiro Ohtsuka;Yasutoshi Iriyama

  • High lithium ion conductive Li7La3Zr2O12 by inclusion of both Al and Si

    Shota Kumazaki;Yasutoshi Iriyama;Ki-Hyun Kim;Ramaswamy Murugan

  • In-situ Li7La3Zr2O12/LiCoO2 interface modification for advanced all-solid-state battery

    Takehisa Kato;Tadashi Hamanaka;Kazuo Yamamoto;Tsukasa Hirayama

  • Preparation of c-axis oriented thin films of LiCoO2 by pulsed laser deposition and their electrochemical properties

    Yasutoshi Iriyama;Minoru Inaba;Takeshi Abe;Zempachi Ogumi

  • Suppression of dendritic lithium formation by using concentrated electrolyte solutions

    Soon-Ki Jeong;Hee-Young Seo;Dong-Hak Kim;Hyun-Kak Han

  • Electrochemical intercalation of lithium ion within graphite from propylene carbonate solutions

    Soon-Ki Jeong;Minoru Inaba;Yasutoshi Iriyama;Takeshi Abe

  • Li+ and Na+ transfer through interfaces between inorganic solid electrolytes and polymer or liquid electrolytes

    Fumihiro Sagane;Takeshi Abe;Yasutoshi Iriyama;Zempachi Ogumi

  • Dielectric Modification of 5V‐Class Cathodes for High‐Voltage All‐Solid‐State Lithium Batteries

    Chihiro Yada;Akihiro Ohmori;Kazuto Ide;Hisatsugu Yamasaki

  • Surface film formation on a graphite negative electrode in lithium-ion batteries: AFM study on the effects of co-solvents in ethylene carbonate-based solutions

    Soon-Ki Jeong;Minoru Inaba;Yasutoshi Iriyama;Takeshi Abe

  • Interfacial reactions between graphite electrodes and propylene carbonate-based solutions: Electrolyte-concentration dependence of electrochemical lithium intercalation reaction

    Soon-Ki Jeong;Minoru Inaba;Yasutoshi Iriyama;Takeshi Abe

  • Lithium-ion transfer at LiMn2O4 thin film electrode prepared by pulsed laser deposition

    Izumi Yamada;Takeshi Abe;Yasutoshi Iriyama;Zempachi Ogumi

Frequent Co-Authors

Zempachi Ogumi
Zempachi Ogumi Kyoto University
Takeshi Abe
Takeshi Abe Kyoto University
Minoru Inaba
Minoru Inaba Doshisha University
Yoshiharu Uchimoto
Yoshiharu Uchimoto Kyoto University
Haruyuki Inui
Haruyuki Inui Kyoto University
Toshiaki Matsui
Toshiaki Matsui Kyoto University
Yuki Yamada
Yuki Yamada University of Tokyo
Craig A. J. Fisher
Craig A. J. Fisher University of Oxford
Ki-Hyun Kim
Ki-Hyun Kim Hanyang University
Yoshitaka Tateyama
Yoshitaka Tateyama National Institute for Materials Science

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